text/appendixes/comparing_defs.tex
author Scott Morrison <scott@tqft.net>
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%!TEX root = ../../blob1.tex
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\section{Comparing \texorpdfstring{$n$}{n}-category definitions}
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\label{sec:comparing-defs}
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In \S\ref{sec:example:traditional-n-categories(fields)} we showed how to construct
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a disk-like  $n$-category from a traditional $n$-category; the morphisms of the 
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disk-like  $n$-category are string diagrams labeled by the traditional $n$-category.
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In this appendix we sketch how to go the other direction, for $n=1$ and 2.
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The basic recipe, given a disk-like $n$-category $\cC$, is to define the $k$-morphisms
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of the corresponding traditional $n$-category to be $\cC(B^k)$, where
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$B^k$ is the {\it standard} $k$-ball.
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One must then show that the axioms of \S\ref{ss:n-cat-def} imply the traditional $n$-category axioms.
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One should also show that composing the two arrows (between traditional and disk-like $n$-categories)
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yields the appropriate sort of equivalence on each side.
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Since we haven't given a definition for functors between disk-like $n$-categories, we do not pursue this here.
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We emphasize that we are just sketching some of the main ideas in this appendix ---
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it falls well short of proving the definitions are equivalent.
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%\nn{cases to cover: (a) ordinary $n$-cats for $n=1,2$; (b) $n$-cat modules for $n=1$, also 2?;
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%(c) $A_\infty$ 1-cat; (b) $A_\infty$ 1-cat module?; (e) tensor products?}
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\subsection{1-categories over \texorpdfstring{$\Set$ or $\Vect$}{Set or Vect}}
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\label{ssec:1-cats}
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Given a disk-like $1$-category $\cX$ we construct a $1$-category in the conventional sense, $c(\cX)$.
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This construction is quite straightforward, but we include the details for the sake of completeness, 
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because it illustrates the role of structures (e.g. orientations, spin structures, etc) 
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on the underlying manifolds, and 
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to shed some light on the $n=2$ case, which we describe in \S \ref{ssec:2-cats}.
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Let $B^k$ denote the \emph{standard} $k$-ball.
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Let the objects of $c(\cX)$ be $c(\cX)^0 = \cX(B^0)$ and the morphisms of $c(\cX)$ be $c(\cX)^1 = \cX(B^1)$.
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The boundary and restriction maps of $\cX$ give domain and range maps from $c(\cX)^1$ to $c(\cX)^0$.
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Choose a homeomorphism $B^1\cup_{pt}B^1 \to B^1$.
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Define composition in $c(\cX)$ to be the induced map $c(\cX)^1\times c(\cX)^1 \to c(\cX)^1$ 
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(defined only when range and domain agree).
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By isotopy invariance in $\cX$, any other choice of homeomorphism gives the same composition rule.
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Also by isotopy invariance, composition is strictly associative.
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Given $a\in c(\cX)^0$, define $\id_a \deq a\times B^1$.
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By extended isotopy invariance in $\cX$, this has the expected properties of an identity morphism.
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We have now defined the basic ingredients for the 1-category $c(\cX)$.
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As we explain below, $c(\cX)$ might have additional structure corresponding to the
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unoriented, oriented, Spin, $\text{Pin}_+$ or $\text{Pin}_-$ structure on the 1-balls used to define $\cX$.
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For 1-categories based on unoriented balls, 
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there is a map $\dagger:c(\cX)^1\to c(\cX)^1$
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coming from $\cX$ applied to an orientation-reversing homeomorphism (unique up to isotopy) 
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from $B^1$ to itself.
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(Of course our $B^1$ is unoriented, i.e.\ not equipped with an orientation.
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We mean the homeomorphism which would reverse the orientation if there were one;
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$B^1$ is not oriented, but it is orientable.)
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Topological properties of this homeomorphism imply that 
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$a^{\dagger\dagger} = a$ ($\dagger$ is order 2), $\dagger$ reverses domain and range, and $(ab)^\dagger = b^\dagger a^\dagger$
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($\dagger$ is an anti-automorphism).
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Recall that in this context 0-balls should be thought of as equipped with a germ of a 1-dimensional neighborhood.
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There is a unique such 0-ball, up to homeomorphism, but it has a non-identity automorphism corresponding to reversing the
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orientation of the germ.
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Consequently, the objects of $c(\cX)$ are equipped with an involution, also denoted $\dagger$.
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If $a:x\to y$ is a morphism of $c(\cX)$ then $a^\dagger: y^\dagger\to x^\dagger$.
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For 1-categories based on oriented balls, there are no non-trivial homeomorphisms of 0- or 1-balls, and thus no 
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additional structure on $c(\cX)$.
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For 1-categories based on Spin balls,
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the nontrivial spin homeomorphism from $B^1$ to itself which covers the identity
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gives an order 2 automorphism of $c(\cX)^1$.
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There is a similar involution on the objects $c(\cX)^0$.
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In the case where there is only one object and we are enriching over complex vector spaces, this
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is just a super algebra.
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The even elements are the $+1$ eigenspace of the involution on $c(\cX)^1$, 
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and the odd elements are the $-1$ eigenspace of the involution.
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For 1-categories based on $\text{Pin}_-$ balls,
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we have an order 4 antiautomorphism of $c(\cX)^1$.
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For 1-categories based on $\text{Pin}_+$ balls,
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we have an order 2 antiautomorphism and also an order 2 automorphism of $c(\cX)^1$,
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and these two maps commute with each other.
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In both cases there is a similar map on objects.
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\noop{
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\medskip
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In the other direction, given a $1$-category $C$
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(with objects $C^0$ and morphisms $C^1$) we will construct a disk-like
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$1$-category $t(C)$.
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If $X$ is a 0-ball (point), let $t(C)(X) \deq C^0$.
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If $S$ is a 0-sphere, let $t(C)(S) \deq C^0\times C^0$.
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If $X$ is a 1-ball, let $t(C)(X) \deq C^1$.
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Homeomorphisms isotopic to the identity act trivially.
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If $C$ has extra structure (e.g.\ it's a *-1-category), we use this structure
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to define the action of homeomorphisms not isotopic to the identity
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(and get, e.g., an unoriented disk-like 1-category).
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The domain and range maps of $C$ determine the boundary and restriction maps of $t(C)$.
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Gluing maps for $t(C)$ are determined by composition of morphisms in $C$.
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For $X$ a 0-ball, $D$ a 1-ball and $a\in t(C)(X)$, define the product morphism 
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$a\times D \deq \id_a$.
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It is not hard to verify that this has the desired properties.
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\medskip
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The compositions of the constructions above, $$\cX\to c(\cX)\to t(c(\cX))$$ 
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and $$C\to t(C)\to c(t(C)),$$ give back 
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more or less exactly the same thing we started with.  
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As we will see below, for $n>1$ the compositions yield a weaker sort of equivalence.
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} %end \noop
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\medskip
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Similar arguments show that modules for disk-like 1-categories are essentially
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the same thing as traditional modules for traditional 1-categories.
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\subsection{Pivotal 2-categories}
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\label{ssec:2-cats}
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Let $\cC$ be a disk-like 2-category.
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We will construct from $\cC$ a traditional pivotal 2-category $D$.
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(The ``pivotal" corresponds to our assumption of strong duality for $\cC$.)
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We will try to describe the construction in such a way that the generalization to $n>2$ is clear,
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though this will make the $n=2$ case a little more complicated than necessary.
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Before proceeding, we must decide whether the 2-morphisms of our
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pivotal 2-category are shaped like rectangles or bigons.
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Each approach has advantages and disadvantages.
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For better or worse, we choose bigons here.
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Define the $k$-morphisms $D^k$ of $D$ to be $\cC(B^k) \trans E$, where $B^k$ denotes the standard
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$k$-ball, which we also think of as the standard bihedron (a.k.a.\ globe).
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(For $k=1$ this is an interval, and for $k=2$ it is a bigon.)
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Since we are thinking of $B^k$ as a bihedron, we have a standard decomposition of the $\bd B^k$
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into two copies of $B^{k-1}$ which intersect along the ``equator" $E \cong S^{k-2}$.
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Recall that the subscript in $\cC(B^k) \trans E$ means that we consider the subset of $\cC(B^k)$
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whose boundary is splittable along $E$.
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This allows us to define the domain and range of morphisms of $D$ using
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boundary and restriction maps of $\cC$.
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Choosing a homeomorphism $B^1\cup B^1 \to B^1$ defines a composition map on $D^1$.
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This is not associative, but we will see later that it is weakly associative.
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Choosing a homeomorphism $B^2\cup B^2 \to B^2$ defines a ``vertical" composition map 
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on $D^2$ (Figure \ref{fzo1}).
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Isotopy invariance implies that this is associative.
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We will define a ``horizontal" composition later.
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\begin{figure}[t]
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\centering
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\begin{tikzpicture}
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\newcommand{\vertex}{node[circle,fill=black,inner sep=1pt] {}}
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\newcommand{\nsep}{1.8}
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\node[outer sep=\nsep](A) at (0,0) {
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\begin{tikzpicture}
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	\draw (0,0) coordinate (p1);
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	\draw (4,0) coordinate (p2);
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	\draw (2,1.2) coordinate (pu);
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	\draw (2,-1.2) coordinate (pd);
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	\draw (p1) .. controls (pu) .. (p2) .. controls (pd) .. (p1);
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	\draw (p1)--(p2);
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	\draw (p1) \vertex;
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	\draw (p2) \vertex;
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	\node at (2.1, .44) {$B^2$};
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	\node at (2.1, -.44) {$B^2$};
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\end{tikzpicture}
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};
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\node[outer sep=\nsep](B) at (6,0) {
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\begin{tikzpicture}
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	\draw (0,0) coordinate (p1);
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	\draw (4,0) coordinate (p2);
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	\draw (2,.6) coordinate (pu);
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	\draw (2,-.6) coordinate (pd);
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	\draw (p1) .. controls (pu) .. (p2) .. controls (pd) .. (p1);
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	\draw[help lines, dashed] (p1)--(p2);
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	\draw (p1) \vertex;
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	\draw (p2) \vertex;
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	\node at (2.1,0) {$B^2$};
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\end{tikzpicture}
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};
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\draw[->, thick, blue!50!green] (A) -- node[black, above] {$\cong$} (B);
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\end{tikzpicture}
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\caption{Vertical composition of 2-morphisms}
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\label{fzo1}
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\end{figure}
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Given $a\in D^1$, define $\id_a = a\times I \in D^2$ (pinched boundary).
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Extended isotopy invariance for $\cC$ shows that this morphism is an identity for 
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vertical composition.
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Given $x\in C^0$, define $\id_x = x\times B^1 \in C^1$.
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We will show that this 1-morphism is a weak identity.
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This would be easier if our 2-morphisms were shaped like rectangles rather than bigons.
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In showing that identity 1-morphisms have the desired properties, we will
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rely heavily on the extended isotopy invariance of 2-morphisms in $\cC$.
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Extended isotopy invariance implies that adding a product collar to a 2-morphism of $\cC$ has no effect,
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and by cutting and regluing we can insert (or delete) product regions in the interior of 2-morphisms as well.
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Figure \nn{triangle.pdf 2.a through 2.d} shows some examples.
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201
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Let $a: y\to x$ be a 1-morphism.
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Define 2-morphsims $a \to a\bullet \id_x$ and $a\bullet \id_x \to a$
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as shown in Figure \ref{fzo2}.
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\begin{figure}[t]
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\centering
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\begin{tikzpicture}
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\newcommand{\rr}{6}
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\newcommand{\vertex}{node[circle,fill=black,inner sep=1pt] {}}
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\newcommand{\namedvertex}[1]{node[circle,fill=black,inner sep=1pt] (#1) {}}
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\node(A) at (0,0) {
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\begin{tikzpicture}
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\node[red,left] at (0,0)  {$y$};
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\draw (0,0) \vertex arc (-120:-105:\rr) node[red,below] {$a$} arc(-105:-90:\rr) \vertex node[red,below](x2) {$x$};
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\draw (0,0) \vertex arc (120:105:\rr) node[red,above] {$a$} arc (105:90:\rr) \vertex node[red,above](x1) {$x$} -- (x2);
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\begin{scope}
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	\path[clip] (0,0) arc (-120:-60:\rr) arc (60:120:\rr);
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	\foreach \x in {0,0.24,...,3} {
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		\draw[green!50!brown] (\x,1) -- (\x,-1);
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	}
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\end{scope}
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\draw[red, decorate,decoration={brace,amplitude=5pt}] ($(x1)+(0.2,-0.2)$) -- ($(x2)+(0.2,0.2)$) node[midway, xshift=0.7cm] {$x \times I$};
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\end{tikzpicture}
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};
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\node(B) at (-4,-4) {
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\begin{tikzpicture}
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\node[red,left] at (0,0) {$y$};
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\draw (0,0) \vertex 
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	arc (120:105:\rr) node[red,above] {$a$}
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	arc (105:90:\rr) node[red,above] {$x$} \namedvertex{x1};
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%	arc (90:75:\rr) node[red,above] {$x \times I$};
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%	arc (75:60:\rr) \vertex node[red,right] {$x$}
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%	arc (-60:-90:\rr) node[red,below] {$a$}
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%	arc (-90:-120:\rr);
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\draw (0,0)
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	arc (-120:-90:\rr) node[red,below] {$a$}
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	arc (-90:-61:\rr) \namedvertex{x2} node[red,right] {$x$};
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\draw (x1) -- node[red, above=3pt] {$x \times I$} (x2);
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\begin{scope}
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	\path[clip] (0,0) arc (-120:-60:\rr) arc (60:120:\rr);
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	\foreach \x in {0,0.48,...,9} {
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		\draw[green!50!brown] (\x/4,1) -- (\x,-1);
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	}
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\end{scope}
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\end{tikzpicture}
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};
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\node(C) at (4,-4) {
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\begin{tikzpicture}[y=-1cm]
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\node[red,left] at (0,0) {$y$};
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\draw (0,0) \vertex 
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	arc (120:105:\rr) node[red,below] {$a$}
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	arc (105:90:\rr) node[red,below] {$x$} \namedvertex{x1};
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%	arc (90:75:\rr) node[red,below] {$x \times I$}
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%	arc (75:60:\rr) \vertex node[red,right] {$x$}
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%	arc (-60:-90:\rr) node[red,above] {$a$}
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%	arc (-90:-120:\rr);
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\draw (0,0)
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	arc (-120:-90:\rr) node[red,above] {$a$}
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	arc (-90:-61:\rr) \namedvertex{x2} node[red,right] {$x$};
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\draw (x1) -- node[red, below=3pt] {$x \times I$} (x2);
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\begin{scope}
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	\path[clip] (0,0) arc (-120:-60:\rr) arc (60:120:\rr);
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	\foreach \x in {0,0.48,...,9} {
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		\draw[green!50!brown] (\x/4,1) -- (\x,-1);
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	}
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\end{scope}
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\end{tikzpicture}
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};
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\draw[->] (A) -- (B);
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\draw[->] (A) -- (C);
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\end{tikzpicture}
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\caption{Producing weak identities from half pinched products}
126
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\label{fzo2}
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\end{figure}
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54328be726e7 comparing_defs.tex 2-cat section
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As suggested by the figure, these are two different reparameterizations
934
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of a half-pinched version of $a\times I$
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(i.e.\ two different homeomorphisms from the half-pinched $I\times I$ to the standard bigon).
125
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We must show that the two compositions of these two maps give the identity 2-morphisms
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on $a$ and $a\bullet \id_x$, as defined above.
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Figure \ref{fzo3} shows one case.
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\begin{figure}[t]
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\centering
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\begin{tikzpicture}
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\newcommand{\vertex}{node[circle,fill=black,inner sep=1pt] {}}
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\newcommand{\nsep}{1.8}
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\node(A) at (0,0) {
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\begin{tikzpicture}
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	\draw (0,0) coordinate (p1);
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	\draw (3.6,0) coordinate (p2);
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	\draw (2.3,1) coordinate (p3);
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	\draw (2.3,-1) coordinate (p4);
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	\begin{scope}
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		\clip (p1) 	.. controls +(.5,-.5) and +(-.8,0)  .. (p4) -- 
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				(p2) -- (p3) .. controls +(-.8,0) and +(.5,.5) .. (p1);
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		\foreach \x in {0,0.26,...,4} {
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			\draw[green!50!brown] (\x,0) -- (intersection cs: first line={(p2)--(p3)}, second line={(0,0)--(0,1)});
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			\draw[green!50!brown] (\x,0) -- (intersection cs: first line={(p2)--(p4)}, second line={(0,0)--(0,1)});
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		}
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	\end{scope}
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	\draw (p1) .. controls ($(p1) + (.5,.5)$) and ($(p3) + (-.8,0)$) .. node[red, above=3pt] {$a$} (p3);
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	\draw (p1) .. controls ($(p1) + (.5,-.5)$) and ($(p4) + (-.8,0)$) .. node[red, below=3pt] {$a$} (p4);
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	\draw (p3) -- node[red, above=7pt, right=1pt] {$x \times I$} (p2);
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	\draw (p4) -- node[red, below=7pt, right=1pt] {$x \times I$} (p2);
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	\draw (p1) -- (p2);
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	\draw (p1) \vertex;
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	\draw (p2) \vertex;
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	\draw (p3) \vertex;
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	\draw (p4) \vertex;
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\end{tikzpicture}
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};
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\node[outer sep=\nsep](B) at (5.5,0) {
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\begin{tikzpicture}
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	\draw (0,0) coordinate (p1);
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	\draw (3.6,0) coordinate (p2);
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	\draw (2.3,1) coordinate (p3);
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	\draw (2.3,-1) coordinate (p4);
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	\draw (4.6,0) coordinate (p2b);
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	\begin{scope}
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		\clip (p1) 	.. controls +(.5,-.5) and +(-.8,0)  .. (p4) -- 
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				(p2) -- (p3) .. controls +(-.8,0) and +(.5,.5) .. (p1);
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		\foreach \x in {0,0.26,...,4} {
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			\draw[green!50!brown] (\x,0) -- (intersection cs: first line={(p2)--(p3)}, second line={(0,0)--(0,1)});
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			\draw[green!50!brown] (\x,0) -- (intersection cs: first line={(p2)--(p4)}, second line={(0,0)--(0,1)});
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		}
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	\end{scope}
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	\begin{scope}
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		\clip (p3)--(p2)--(p4)--(p2b)--cycle;
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		\draw[blue!50!brown, step=.23] ($(p4)+(0,-1)$) grid +(3,3);
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	\end{scope}
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   365
	
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	\draw (p1) .. controls ($(p1) + (.5,.5)$) and ($(p3) + (-.8,0)$) .. node[red, above=3pt] {$a$} (p3);
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	\draw (p1) .. controls ($(p1) + (.5,-.5)$) and ($(p4) + (-.8,0)$) .. node[red, below=3pt] {$a$} (p4);
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	\draw (p3) -- (p2);
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	\draw (p4) -- (p2);
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	\draw (p3) -- node[red, above=7pt, right=1pt] {$x \times I$} (p2b);
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	\draw (p4) -- node[red, below=7pt, right=1pt] {$x \times I$} (p2b);
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	\draw (p1) \vertex;
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	\draw (p2) \vertex;
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	\draw (p3) \vertex;
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	\draw (p4) \vertex;
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	\draw (p2b) \vertex;
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\end{tikzpicture}
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};
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\node[outer sep=\nsep](C) at (11,0) {
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\begin{tikzpicture}
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diff changeset
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	\draw (0,0) coordinate (p1);
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	\draw (2.3,0) coordinate (p2);
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	\draw (2.3,1) coordinate (p3);
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	\draw (2.3,-1) coordinate (p4);
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	\draw (3.6,0) coordinate (p2b);
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	\begin{scope}
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		\clip (p1) 	.. controls +(.5,-.5) and +(-.8,0)  .. (p4) -- 
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				(p2) -- (p3) .. controls +(-.8,0) and +(.5,.5) .. (p1);
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		\foreach \x in {0,0.26,...,4} {
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			\draw[green!50!brown] (\x,-1) -- (\x,1);
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		}
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	\end{scope}
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   398
	
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	\begin{scope}
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		\clip (p3)--(p2)--(p4)--(p2b)--cycle;
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		\draw[blue!50!brown, step=.23] ($(p4)+(0,-1)$) grid +(3,3);
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	\end{scope}
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   403
	
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	\draw (p1) .. controls ($(p1) + (.5,.5)$) and ($(p3) + (-.8,0)$) .. node[red, above=3pt] {$a$} (p3);
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	\draw (p1) .. controls ($(p1) + (.5,-.5)$) and ($(p4) + (-.8,0)$) .. node[red, below=3pt] {$a$} (p4);
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	\draw[green!50!brown] (p3) -- (p4);
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	\draw (p3) -- node[red, above=7pt, right=1pt] {$x \times I$} (p2b);
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	\draw (p4) -- node[red, below=7pt, right=1pt] {$x \times I$} (p2b);
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	\draw (p1) \vertex;
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	\draw (p3) \vertex;
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	\draw (p4) \vertex;
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	\draw (p2b) \vertex;
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Kevin Walker <kevin@canyon23.net>
parents: 503
diff changeset
   415
\end{tikzpicture}
3072c2614a53 adding tikz fig
Kevin Walker <kevin@canyon23.net>
parents: 503
diff changeset
   416
};
3072c2614a53 adding tikz fig
Kevin Walker <kevin@canyon23.net>
parents: 503
diff changeset
   417
3072c2614a53 adding tikz fig
Kevin Walker <kevin@canyon23.net>
parents: 503
diff changeset
   418
\draw[->, thick, blue!50!green] (A) -- (B);
3072c2614a53 adding tikz fig
Kevin Walker <kevin@canyon23.net>
parents: 503
diff changeset
   419
\draw[->, thick, blue!50!green] (B) -- node[black, above] {$=$} (C);
3072c2614a53 adding tikz fig
Kevin Walker <kevin@canyon23.net>
parents: 503
diff changeset
   420
3072c2614a53 adding tikz fig
Kevin Walker <kevin@canyon23.net>
parents: 503
diff changeset
   421
\end{tikzpicture}
498
b98790f0282e diagram for producing weak identities
Scott Morrison <scott@tqft.net>
parents: 481
diff changeset
   422
\caption{Composition of weak identities, 1}
126
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 125
diff changeset
   423
\label{fzo3}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 125
diff changeset
   424
\end{figure}
457
54328be726e7 comparing_defs.tex 2-cat section
Kevin Walker <kevin@canyon23.net>
parents: 451
diff changeset
   425
In the first step we have inserted a copy of $(x\times I)\times I$.
125
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 124
diff changeset
   426
Figure \ref{fzo4} shows the other case.
126
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 125
diff changeset
   427
\begin{figure}[t]
530
b236746e8e4d futzing with figures (\begin{center|equation} to \centering)
Kevin Walker <kevin@canyon23.net>
parents: 529
diff changeset
   428
\centering
509
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   429
\begin{tikzpicture}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   430
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   431
\newcommand{\vertex}{node[circle,fill=black,inner sep=1pt] {}}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   432
\newcommand{\nsep}{1.8}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   433
510
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   434
\clip (-4,-1.25)--(12,-1.25)--(16,1.25)--(-1,1.25)--cycle;
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   435
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   436
509
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   437
\node[outer sep=\nsep](A) at (0,0) {
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   438
\begin{tikzpicture}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   439
	\draw (0,0) coordinate (p1);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   440
	\draw (4,0) coordinate (p2);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   441
	\draw (2.4,0) coordinate (p2a);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   442
	\draw (2,1.2) coordinate (pu);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   443
	\draw (2,-1.2) coordinate (pd);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   444
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   445
	\begin{scope}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   446
		\clip (p1) .. controls (pu) .. (p2) .. controls (pd) .. (p1);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   447
		\foreach \t in {0,.065,...,1} {
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   448
			\draw[green!50!brown] ($(p1)!\t!(p2a)$) -- +(90 - \t*90 + \t*6 : 4);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   449
			\draw[green!50!brown] ($(p1)!\t!(p2a)$) -- +(-90 + \t*90 - \t*6 : 4);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   450
		}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   451
		\draw[dashed] ($(p2a) + (-.6,3)$)--(p2a)--($(p2a) + (-.6,-3)$);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   452
	\end{scope}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   453
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   454
	\draw (p1) .. controls (pu) .. (p2) .. controls (pd) .. (p1);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   455
	\draw (p1)--(p2);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   456
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   457
	\draw (p1) \vertex;
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   458
	\draw (p2) \vertex;
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   459
	\draw (p2a) \vertex;
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   460
\end{tikzpicture}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   461
};
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   462
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   463
\node[outer sep=\nsep](B) at (5,0) {
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   464
\begin{tikzpicture}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   465
	\draw (0,0) coordinate (p1);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   466
	\draw (4,0) coordinate (p2);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   467
	\draw (2.4,0) coordinate (p2a);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   468
	\draw (2,1.2) coordinate (pu);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   469
	\draw (2,-1.2) coordinate (pd);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   470
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   471
	\begin{scope}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   472
	\clip (-.1,3)--($(p2a) + (-.6,3)$)--(p2a)--($(p2a) + (-.6,-3)$)--(-.1,-3)--cycle;
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   473
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   474
	\begin{scope}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   475
		\clip (p1) .. controls (pu) .. (p2) .. controls (pd) .. (p1);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   476
		\foreach \t in {0,.065,...,1} {
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   477
			\draw[green!50!brown] ($(p1)!\t!(p2a)$) -- +(90 - \t*90 + \t*6 : 4);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   478
			\draw[green!50!brown] ($(p1)!\t!(p2a)$) -- +(-90 + \t*90 - \t*6 : 4);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   479
		}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   480
		\draw ($(p2a) + (-.6,3)$)--(p2a)--($(p2a) + (-.6,-3)$);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   481
	\end{scope}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   482
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   483
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   484
	\draw (p1) .. controls (pu) .. (p2) .. controls (pd) .. (p1);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   485
	%\draw (p1)--(p2);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   486
	\end{scope}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   487
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   488
	\begin{scope}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   489
		\clip (p1) .. controls (pu) .. (p2) .. controls (pd) .. (p1);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   490
		\draw ($(p2a) + (-.6,3)$)--(p2a)--($(p2a) + (-.6,-3)$);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   491
	\end{scope}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   492
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   493
	\draw (p1) \vertex;
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   494
	\draw (p2a) \vertex;
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   495
\end{tikzpicture}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   496
};
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   497
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   498
\node[outer sep=\nsep](C) at (9,0) {
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   499
\begin{tikzpicture}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   500
	\draw (0,0) coordinate (p1);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   501
	\draw (4,0) coordinate (p2);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   502
	\draw (2,1.2) coordinate (pu);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   503
	\draw (2,-1.2) coordinate (pd);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   504
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   505
	\begin{scope}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   506
		\clip (p1) .. controls (pu) .. (p2) .. controls (pd) .. (p1);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   507
		\foreach \t in {0,.045,...,1} {
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   508
			\draw[green!50!brown] ($(p1)!\t!(p2) + (0,2)$) -- +(0,-4);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   509
		}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   510
	\end{scope}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   511
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   512
	\draw (p1) .. controls (pu) .. (p2) .. controls (pd) .. (p1);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   513
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   514
	\draw (p1) \vertex;
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   515
	\draw (p2) \vertex;
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   516
\end{tikzpicture}
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   517
};
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   518
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   519
\draw[->, thick, blue!50!green] (A) -- (B);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   520
\draw[->, thick, blue!50!green] ($(B) + (1,0)$) -- node[black, above] {$=$} (C);
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   521
6755d5ae9aeb another fig
Kevin Walker <kevin@canyon23.net>
parents: 508
diff changeset
   522
\end{tikzpicture}
498
b98790f0282e diagram for producing weak identities
Scott Morrison <scott@tqft.net>
parents: 481
diff changeset
   523
\caption{Composition of weak identities, 2}
126
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 125
diff changeset
   524
\label{fzo4}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 125
diff changeset
   525
\end{figure}
934
303082e628ce start to revise C.3
Kevin Walker <kevin@canyon23.net>
parents: 933
diff changeset
   526
We notice that a certain subset of the disk is a product region and remove it.
124
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 115
diff changeset
   527
934
303082e628ce start to revise C.3
Kevin Walker <kevin@canyon23.net>
parents: 933
diff changeset
   528
Given 2-morphisms $f$ and $g$, we define the horizontal composition $f *_h g$ to be any of the four
303082e628ce start to revise C.3
Kevin Walker <kevin@canyon23.net>
parents: 933
diff changeset
   529
equal 2-morphisms in Figure \ref{fzo5}.
936
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   530
Figure \ref{fig:horizontal-compositions-equal}illustrates part of the proof that these four 2-morphisms are equal.
934
303082e628ce start to revise C.3
Kevin Walker <kevin@canyon23.net>
parents: 933
diff changeset
   531
Similar arguments show that horizontal composition is associative.
127
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 126
diff changeset
   532
\begin{figure}[t]
941
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   533
\begin{align*}
510
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   534
\raisebox{-.9cm}{
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   535
\begin{tikzpicture}
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   536
	\draw (0,0) .. controls +(1,.8) and +(-1,.8) .. node[above] {$b$} (2.9,0)
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   537
				.. controls +(-1,-.8) and +(1,-.8) .. node[below] {$a$} (0,0);
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   538
	\draw[->, thick, orange!50!brown] (1.45,-.4)--  node[left, black] {$f$} +(0,.8);
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   539
\end{tikzpicture}}
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   540
\;\;\;*_h\;\;
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   541
\raisebox{-.9cm}{
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   542
\begin{tikzpicture}
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   543
	\draw (0,0) .. controls +(1,.8) and +(-1,.8) .. node[above] {$d$} (2.9,0)
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   544
				.. controls +(-1,-.8) and +(1,-.8) .. node[below] {$c$} (0,0);
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   545
	\draw[->, thick, orange!50!brown] (1.45,-.4)--  node[left, black] {$g$} +(0,.8);
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   546
\end{tikzpicture}}
941
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   547
\;&=\;
510
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   548
\raisebox{-1.9cm}{
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   549
\begin{tikzpicture}
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   550
	\draw (0,0) coordinate (p1);
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   551
	\draw (5.8,0) coordinate (p2);
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   552
	\draw (2.9,.3) coordinate (pu);
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   553
	\draw (2.9,-.3) coordinate (pd);
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   554
	\begin{scope}
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   555
		\clip (p1) .. controls +(.6,.3) and +(-.5,0) .. (pu)
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   556
					.. controls +(.5,0) and +(-.6,.3) .. (p2)
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   557
					.. controls +(-.6,-.3) and +(.5,0) .. (pd)
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   558
					.. controls +(-.5,0) and +(.6,-.3) .. (p1);
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   559
		\foreach \t in {0,.03,...,1} {
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   560
			\draw[green!50!brown] ($(p1)!\t!(p2) + (0,2)$) -- +(0,-4);
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   561
		}
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   562
	\end{scope}
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   563
	\draw (p1) .. controls +(.6,.3) and +(-.5,0) .. (pu)
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   564
				.. controls +(.5,0) and +(-.6,.3) .. (p2)
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   565
				.. controls +(-.6,-.3) and +(.5,0) .. (pd)
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   566
				.. controls +(-.5,0) and +(.6,-.3) .. (p1);
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   567
	\draw (p1) .. controls +(1,-2) and +(-1,-1) .. (pd);
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   568
	\draw (p2) .. controls +(-1,2) and +(1,1) .. (pu);
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   569
	\draw[->, thick, orange!50!brown] (1.45,-1.1)--  node[left, black] {$f$} +(0,.7);
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   570
	\draw[->, thick, orange!50!brown] (4.35,.4)--  node[left, black] {$g$} +(0,.7);
537de60474ec more figures
Kevin Walker <kevin@canyon23.net>
parents: 509
diff changeset
   571
	\draw[->, thick, blue!75!yellow] (1.5,.78) node[black, above] {$(b\cdot c)\times I$} -- (2.5,0);
941
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   572
\end{tikzpicture}} \\
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   573
\;&=\;
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   574
\raisebox{-2.1cm}{
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   575
\begin{tikzpicture}
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   576
	\draw (0,0) coordinate (p1);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   577
	\draw (5.8,0) coordinate (p2);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   578
	\draw (2.9,0) coordinate (pu);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   579
	\draw (2.9,-.9) coordinate (pd);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   580
	\begin{scope}
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   581
		\clip (p1) .. controls +(.6,-.3) and +(-.5,-.3) .. (pu)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   582
					.. controls +(.5,-.3) and +(-.6,-.3) .. (p2)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   583
					.. controls +(-.6,-.9) and +(.5,0) .. (pd)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   584
					.. controls +(-.5,0) and +(.6,-.9) .. (p1);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   585
		\foreach \t in {0,.03,...,1} {
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   586
			\draw[green!50!brown] ($(p1)!\t!(p2) + (0,2)$) -- +(0,-4);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   587
		}
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   588
	\end{scope}
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   589
	\draw  (p1) .. controls +(.6,-.3) and +(-.5,-.3) .. (pu)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   590
					.. controls +(.5,-.3) and +(-.6,-.3) .. (p2)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   591
					.. controls +(-.6,-.9) and +(.5,0) .. (pd)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   592
					.. controls +(-.5,0) and +(.6,-.9) .. (p1);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   593
	\draw (p1) .. controls +(1,1) and +(-1,1) .. (pu);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   594
	\draw (p2) .. controls +(-1,1) and +(1,1) .. (pu);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   595
	\draw[->, thick, orange!50!brown] (1.45,-0.1)--  node[left, black] {$f$} +(0,.7);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   596
	\draw[->, thick, orange!50!brown] (4.35,-0.1)--  node[left, black] {$g$} +(0,.7);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   597
	\draw[->, thick, blue!75!yellow] (4.3,-1.5) node[black, below] {$(a\cdot c)\times I$} -- (3.3,-0.5);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   598
\end{tikzpicture}} \\
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   599
\;&=\;
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   600
\raisebox{-1.9cm}{
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   601
\begin{tikzpicture}[y=-1cm]
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   602
	\draw (0,0) coordinate (p1);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   603
	\draw (5.8,0) coordinate (p2);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   604
	\draw (2.9,.3) coordinate (pu);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   605
	\draw (2.9,-.3) coordinate (pd);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   606
	\begin{scope}
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   607
		\clip (p1) .. controls +(.6,.3) and +(-.5,0) .. (pu)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   608
					.. controls +(.5,0) and +(-.6,.3) .. (p2)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   609
					.. controls +(-.6,-.3) and +(.5,0) .. (pd)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   610
					.. controls +(-.5,0) and +(.6,-.3) .. (p1);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   611
		\foreach \t in {0,.03,...,1} {
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   612
			\draw[green!50!brown] ($(p1)!\t!(p2) + (0,2)$) -- +(0,-4);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   613
		}
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   614
	\end{scope}
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   615
	\draw (p1) .. controls +(.6,.3) and +(-.5,0) .. (pu)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   616
				.. controls +(.5,0) and +(-.6,.3) .. (p2)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   617
				.. controls +(-.6,-.3) and +(.5,0) .. (pd)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   618
				.. controls +(-.5,0) and +(.6,-.3) .. (p1);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   619
	\draw (p1) .. controls +(1,-2) and +(-1,-1) .. (pd);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   620
	\draw (p2) .. controls +(-1,2) and +(1,1) .. (pu);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   621
	\draw[<-, thick, orange!50!brown] (1.45,-1.1)--  node[left, black] {$f$} +(0,.7);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   622
	\draw[<-, thick, orange!50!brown] (4.35,.4)--  node[left, black] {$g$} +(0,.7);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   623
	\draw[->, thick, blue!75!yellow] (1.5,.78) node[black, below] {$(a\cdot d)\times I$} -- (2.5,0);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   624
\end{tikzpicture}} \\
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   625
\;&=\;
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   626
\raisebox{-1.0cm}{
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   627
\begin{tikzpicture}[y=-1cm]
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   628
	\draw (0,0) coordinate (p1);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   629
	\draw (5.8,0) coordinate (p2);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   630
	\draw (2.9,0) coordinate (pu);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   631
	\draw (2.9,-.9) coordinate (pd);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   632
	\begin{scope}
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   633
		\clip (p1) .. controls +(.6,-.3) and +(-.5,-.3) .. (pu)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   634
					.. controls +(.5,-.3) and +(-.6,-.3) .. (p2)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   635
					.. controls +(-.6,-.9) and +(.5,0) .. (pd)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   636
					.. controls +(-.5,0) and +(.6,-.9) .. (p1);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   637
		\foreach \t in {0,.03,...,1} {
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   638
			\draw[green!50!brown] ($(p1)!\t!(p2) + (0,2)$) -- +(0,-4);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   639
		}
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   640
	\end{scope}
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   641
	\draw  (p1) .. controls +(.6,-.3) and +(-.5,-.3) .. (pu)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   642
					.. controls +(.5,-.3) and +(-.6,-.3) .. (p2)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   643
					.. controls +(-.6,-.9) and +(.5,0) .. (pd)
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   644
					.. controls +(-.5,0) and +(.6,-.9) .. (p1);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   645
	\draw (p1) .. controls +(1,1) and +(-1,1) .. (pu);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   646
	\draw (p2) .. controls +(-1,1) and +(1,1) .. (pu);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   647
	\draw[<-, thick, orange!50!brown] (1.45,-0.1)--  node[left, black] {$f$} +(0,.7);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   648
	\draw[<-, thick, orange!50!brown] (4.35,-0.1)--  node[left, black] {$g$} +(0,.7);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   649
	\draw[->, thick, blue!75!yellow] (4.3,-1.5) node[black, above] {$(b\cdot d)\times I$} -- (3.3,-0.5);
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   650
\end{tikzpicture}} 
ee0c940fce59 just one figure
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   651
\end{align*}
127
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 126
diff changeset
   652
\caption{Horizontal composition of 2-morphisms}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 126
diff changeset
   653
\label{fzo5}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 126
diff changeset
   654
\end{figure}
936
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   655
\begin{figure}[t]
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   656
$$
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   657
\mathfig{0.6}{triangle/triangle3c}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   658
$$
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   659
\caption{Part of the proof that the four different horizontal compositions of 2-morphisms are equal.}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   660
\label{fig:horizontal-compositions-equal}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   661
\end{figure}
125
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 124
diff changeset
   662
934
303082e628ce start to revise C.3
Kevin Walker <kevin@canyon23.net>
parents: 933
diff changeset
   663
Given 1-morphisms $a$, $b$ and $c$ of $D$, we define the associator from $(a\bullet b)\bullet c$ to $a\bullet(b\bullet c)$
946
b07e2becdd58 figures
Scott Morrison <scott@tqft.net>
parents: 936
diff changeset
   664
as in Figure \ref{fig:associator}.
934
303082e628ce start to revise C.3
Kevin Walker <kevin@canyon23.net>
parents: 933
diff changeset
   665
This is just a reparameterization of the pinched product $(a\bullet b\bullet c)\times I$ of $\cC$.
936
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   666
\begin{figure}[t]
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   667
$$
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   668
\mathfig{0.4}{triangle/triangle4a}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   669
$$
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   670
\nn{remember to change the labels}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   671
\caption{An associator.}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   672
\label{fig:associator}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   673
\end{figure}
934
303082e628ce start to revise C.3
Kevin Walker <kevin@canyon23.net>
parents: 933
diff changeset
   674
935
d85867a99545 done with appendic revision (except for figures)
Kevin Walker <kevin@canyon23.net>
parents: 934
diff changeset
   675
Let $x,y,z$ be objects of $D$ and let $a:x\to y$ and $b:y\to z$ be 1-morphisms of $D$.
d85867a99545 done with appendic revision (except for figures)
Kevin Walker <kevin@canyon23.net>
parents: 934
diff changeset
   676
We have already defined above 
d85867a99545 done with appendic revision (except for figures)
Kevin Walker <kevin@canyon23.net>
parents: 934
diff changeset
   677
structure maps $u:a\bullet \id_y\to a$ and $v:\id_y\bullet b\to b$, as well as an associator
d85867a99545 done with appendic revision (except for figures)
Kevin Walker <kevin@canyon23.net>
parents: 934
diff changeset
   678
$\alpha: (a\bullet \id_y)\bullet b\to a\bullet(\id_y\bullet b)$, as shown in
936
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   679
Figure \ref{fig:ingredients-triangle-axiom}.
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   680
(See also Figures \ref{fzo2} and \ref{fig:associator}.)
935
d85867a99545 done with appendic revision (except for figures)
Kevin Walker <kevin@canyon23.net>
parents: 934
diff changeset
   681
We now show that $D$ satisfies the triangle axiom, which states that $u\bullet\id_b$ 
d85867a99545 done with appendic revision (except for figures)
Kevin Walker <kevin@canyon23.net>
parents: 934
diff changeset
   682
is equal to the composition of $\alpha$ and $\id_a\bullet v$.
d85867a99545 done with appendic revision (except for figures)
Kevin Walker <kevin@canyon23.net>
parents: 934
diff changeset
   683
(Both are 2-morphisms from $(a\bullet \id_y)\bullet b$ to $a\bullet b$.)
936
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   684
\begin{figure}[t]
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   685
\begin{align*}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   686
\mathfig{0.4}{triangle/triangle4a} \\
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   687
\mathfig{0.4}{triangle/triangle4b} \\
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   688
\mathfig{0.4}{triangle/triangle4c} 
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   689
\end{align*}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   690
\nn{remember to change `assoc' to $\alpha$}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   691
\caption{Ingredients for the triangle axiom.}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   692
\label{fig:ingredients-triangle-axiom}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   693
\end{figure}
935
d85867a99545 done with appendic revision (except for figures)
Kevin Walker <kevin@canyon23.net>
parents: 934
diff changeset
   694
936
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   695
The horizontal compositions $u\bullet\id_b$ and $\id_a\bullet v$ are shown in Figure \ref{fig:horizontal-composition}
935
d85867a99545 done with appendic revision (except for figures)
Kevin Walker <kevin@canyon23.net>
parents: 934
diff changeset
   696
(see also Figure \ref{fzo5}).
936
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   697
The vertical composition of $\alpha$ and $\id_a\bullet v$ is shown in Figure \ref{fig:vertical-composition}.
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   698
Figure \ref{fig:adding-a-collar} shows that we can add a collar to $u\bullet\id_b$ so that the result differs from
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   699
Figure  \ref{fig:vertical-composition} by an isotopy rel boundary.
935
d85867a99545 done with appendic revision (except for figures)
Kevin Walker <kevin@canyon23.net>
parents: 934
diff changeset
   700
Note that here we have used in an essential way the associativity of product morphisms (Axiom \ref{axiom:product}.3) 
d85867a99545 done with appendic revision (except for figures)
Kevin Walker <kevin@canyon23.net>
parents: 934
diff changeset
   701
as well as compatibility of product morphisms with fiber-preserving maps (Axiom \ref{axiom:product}.1).
936
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   702
\begin{figure}[t]
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   703
\begin{align*}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   704
\mathfig{0.4}{triangle/triangle4d}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   705
\mathfig{0.4}{triangle/triangle4e}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   706
\end{align*}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   707
\caption{Horizontal compositions in the triangle axiom.}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   708
\label{fig:horizontal-composition}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   709
\end{figure}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   710
\begin{figure}[t]
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   711
\begin{align*}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   712
\mathfig{0.4}{triangle/triangle4f}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   713
\end{align*}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   714
\caption{Vertical composition in the triangle axiom.}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   715
\label{fig:vertical-composition}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   716
\end{figure}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   717
\begin{figure}[t]
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   718
\begin{align*}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   719
\mathfig{0.4}{triangle/triangle5}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   720
\end{align*}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   721
\caption{Adding a collar in the proof of the triangle axiom.}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   722
\label{fig:adding-a-collar}
d73a88d78498 chopping up hand-drawn figures, and getting all the figure environments and references right
Scott Morrison <scott@tqft.net>
parents: 935
diff changeset
   723
\end{figure}
935
d85867a99545 done with appendic revision (except for figures)
Kevin Walker <kevin@canyon23.net>
parents: 934
diff changeset
   724
d85867a99545 done with appendic revision (except for figures)
Kevin Walker <kevin@canyon23.net>
parents: 934
diff changeset
   725
d85867a99545 done with appendic revision (except for figures)
Kevin Walker <kevin@canyon23.net>
parents: 934
diff changeset
   726
512
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 510
diff changeset
   727
\subsection{\texorpdfstring{$A_\infty$}{A-infinity} 1-categories}
194
scott@6e1638ff-ae45-0410-89bd-df963105f760
parents: 169
diff changeset
   728
\label{sec:comparing-A-infty}
431
Scott Morrison <scott@tqft.net>
parents: 345
diff changeset
   729
In this section, we make contact between the usual definition of an $A_\infty$ category 
888
a0fd6e620926 Backed out changeset 7abe7642265e
Kevin Walker <kevin@canyon23.net>
parents: 865
diff changeset
   730
and our definition of a disk-like $A_\infty$ $1$-category, from \S \ref{ss:n-cat-def}.
477
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   731
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   732
\medskip
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   733
888
a0fd6e620926 Backed out changeset 7abe7642265e
Kevin Walker <kevin@canyon23.net>
parents: 865
diff changeset
   734
Given a disk-like $A_\infty$ $1$-category $\cC$, we define an ``$m_k$-style" 
477
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   735
$A_\infty$ $1$-category $A$ as follows.
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   736
The objects of $A$ are $\cC(pt)$.
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   737
The morphisms of $A$, from $x$ to $y$, are $\cC(I; x, y)$
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   738
($\cC$ applied to the standard interval with boundary labeled by $x$ and $y$).
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   739
For simplicity we will now assume there is only one object and suppress it from the notation.
887
ab0b4827c89c more referee report stuff, relatively minor
Kevin Walker <kevin@canyon23.net>
parents: 865
diff changeset
   740
Henceforth $A$ will also denote its unique morphism space.
477
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   741
854
1e4bb652812d typos from ref rpt
Kevin Walker <kevin@canyon23.net>
parents: 853
diff changeset
   742
A choice of homeomorphism $I\cup I \to I$ induces a chain map $m_2: A\otimes A\to A$.
477
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   743
We now have two different homeomorphisms $I\cup I\cup I \to I$, but they are isotopic.
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   744
Choose a specific 1-parameter family of homeomorphisms connecting them; this induces
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   745
a degree 1 chain homotopy $m_3:A\ot A\ot A\to A$.
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   746
Proceeding in this way we define the rest of the $m_i$'s.
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   747
It is straightforward to verify that they satisfy the necessary identities.
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   748
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   749
\medskip
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   750
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   751
In the other direction, we start with an alternative conventional definition of an $A_\infty$ algebra:
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   752
an algebra $A$ for the $A_\infty$ operad.
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   753
(For simplicity, we are assuming our $A_\infty$ 1-category has only one object.)
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   754
We are free to choose any operad with contractible spaces, so we choose the operad
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   755
whose $k$-th space is the space of decompositions of the standard interval $I$ into $k$
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   756
parameterized copies of $I$.
480
a26808b5db66 a-inf comparison tweaks
Kevin Walker <kevin@canyon23.net>
parents: 477
diff changeset
   757
Note in particular that when $k=1$ this implies a $C_*(\Homeo(I))$ action on $A$.
a26808b5db66 a-inf comparison tweaks
Kevin Walker <kevin@canyon23.net>
parents: 477
diff changeset
   758
(Compare with Example \ref{ex:e-n-alg} and the discussion which precedes it.)
477
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   759
Given a non-standard interval $J$, we define $\cC(J)$ to be
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   760
$(\Homeo(I\to J) \times A)/\Homeo(I\to I)$,
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   761
where $\beta \in \Homeo(I\to I)$ acts via $(f, a) \mapsto (f\circ \beta\inv, \beta_*(a))$.
480
a26808b5db66 a-inf comparison tweaks
Kevin Walker <kevin@canyon23.net>
parents: 477
diff changeset
   762
Note that $\cC(J) \cong A$ (non-canonically) for all intervals $J$.
477
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   763
We define a $\Homeo(J)$ action on $\cC(J)$ via $g_*(f, a) = (g\circ f, a)$.
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   764
The $C_*(\Homeo(J))$ action is defined similarly.
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   765
887
ab0b4827c89c more referee report stuff, relatively minor
Kevin Walker <kevin@canyon23.net>
parents: 865
diff changeset
   766
Let $J_1$ and $J_2$ be intervals, and let $J_1\cup J_2$ denote their union along a single boundary point.
477
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   767
We must define a map $\cC(J_1)\ot\cC(J_2)\to\cC(J_1\cup J_2)$.
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   768
Choose a homeomorphism $g:I\to J_1\cup J_2$.
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   769
Let $(f_i, a_i)\in \cC(J_i)$.
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   770
We have a parameterized decomposition of $I$ into two intervals given by
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   771
$g\inv \circ f_i$, $i=1,2$.
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   772
Corresponding to this decomposition the operad action gives a map $\mu: A\ot A\to A$.
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   773
Define the gluing map to send $(f_1, a_1)\ot (f_2, a_2)$ to $(g, \mu(a_1\ot a_2))$.
480
a26808b5db66 a-inf comparison tweaks
Kevin Walker <kevin@canyon23.net>
parents: 477
diff changeset
   774
Operad associativity for $A$ implies that this gluing map is independent of the choice of
a26808b5db66 a-inf comparison tweaks
Kevin Walker <kevin@canyon23.net>
parents: 477
diff changeset
   775
$g$ and the choice of representative $(f_i, a_i)$.
477
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   776
888
a0fd6e620926 Backed out changeset 7abe7642265e
Kevin Walker <kevin@canyon23.net>
parents: 865
diff changeset
   777
It is straightforward to verify the remaining axioms for a disk-like $A_\infty$ 1-category.
477
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   778
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   779
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   780
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   781
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   782
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   783
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   784
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   785
\noop { %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
194
scott@6e1638ff-ae45-0410-89bd-df963105f760
parents: 169
diff changeset
   786
431
Scott Morrison <scott@tqft.net>
parents: 345
diff changeset
   787
That definition associates a chain complex to every interval, and we begin by giving an alternative definition that is entirely in terms of the chain complex associated to the standard interval $[0,1]$. 
194
scott@6e1638ff-ae45-0410-89bd-df963105f760
parents: 169
diff changeset
   788
\begin{defn}
345
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   789
A \emph{topological $A_\infty$ category on $[0,1]$} $\cC$ has a set of objects $\Obj(\cC)$, 
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   790
and for each $a,b \in \Obj(\cC)$, a chain complex $\cC_{a,b}$, along with
194
scott@6e1638ff-ae45-0410-89bd-df963105f760
parents: 169
diff changeset
   791
\begin{itemize}
scott@6e1638ff-ae45-0410-89bd-df963105f760
parents: 169
diff changeset
   792
\item an action of the operad of $\Obj(\cC)$-labeled cell decompositions
scott@6e1638ff-ae45-0410-89bd-df963105f760
parents: 169
diff changeset
   793
\item and a compatible action of $\CD{[0,1]}$.
scott@6e1638ff-ae45-0410-89bd-df963105f760
parents: 169
diff changeset
   794
\end{itemize}
scott@6e1638ff-ae45-0410-89bd-df963105f760
parents: 169
diff changeset
   795
\end{defn}
345
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   796
Here the operad of cell decompositions of $[0,1]$ has operations indexed by a finite set of 
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   797
points $0 < x_1< \cdots < x_k < 1$, cutting $[0,1]$ into subintervals.
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   798
An $X$-labeled cell decomposition labels $\{0, x_1, \ldots, x_k, 1\}$ by $X$.
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   799
Given two cell decompositions $\cJ^{(1)}$ and $\cJ^{(2)}$, and an index $m$, we can compose 
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   800
them to form a new cell decomposition $\cJ^{(1)} \circ_m \cJ^{(2)}$ by inserting the points 
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   801
of $\cJ^{(2)}$ linearly into the $m$-th interval of $\cJ^{(1)}$.
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   802
In the $X$-labeled case, we insist that the appropriate labels match up.
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   803
Saying we have an action of this operad means that for each labeled cell decomposition 
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   804
$0 < x_1< \cdots < x_k < 1$, $a_0, \ldots, a_{k+1} \subset \Obj(\cC)$, there is a chain 
431
Scott Morrison <scott@tqft.net>
parents: 345
diff changeset
   805
map $$\cC_{a_0,a_1} \tensor \cdots \tensor \cC_{a_k,a_{k+1}} \to \cC_{a_0,a_{k+1}}$$ and these 
345
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   806
chain maps compose exactly as the cell decompositions.
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   807
An action of $\CD{[0,1]}$ is compatible with an action of the cell decomposition operad 
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   808
if given a decomposition $\pi$, and a family of diffeomorphisms $f \in \CD{[0,1]}$ which 
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   809
is supported on the subintervals determined by $\pi$, then the two possible operations 
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   810
(glue intervals together, then apply the diffeomorphisms, or apply the diffeormorphisms 
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   811
separately to the subintervals, then glue) commute (as usual, up to a weakly unique homotopy).
194
scott@6e1638ff-ae45-0410-89bd-df963105f760
parents: 169
diff changeset
   812
345
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   813
Translating between this notion and the usual definition of an $A_\infty$ category is now straightforward.
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   814
To restrict to the standard interval, define $\cC_{a,b} = \cC([0,1];a,b)$.
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   815
Given a cell decomposition $0 < x_1< \cdots < x_k < 1$, we use the map (suppressing labels)
194
scott@6e1638ff-ae45-0410-89bd-df963105f760
parents: 169
diff changeset
   816
$$\cC([0,1])^{\tensor k+1} \to \cC([0,x_1]) \tensor \cdots \tensor \cC[x_k,1] \to \cC([0,1])$$
345
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 204
diff changeset
   817
where the factors of the first map are induced by the linear isometries $[0,1] \to [x_i, x_{i+1}]$, and the second map is just gluing.
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diff changeset
   818
The action of $\CD{[0,1]}$ carries across, and is automatically compatible.
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diff changeset
   819
Going the other way, we just declare $\cC(J;a,b) = \cC_{a,b}$, pick a diffeomorphism 
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   820
$\phi_J : J \isoto [0,1]$ for every interval $J$, define the gluing map 
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diff changeset
   821
$\cC(J_1) \tensor \cC(J_2) \to \cC(J_1 \cup J_2)$ by the first applying 
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diff changeset
   822
the cell decomposition map for $0 < \frac{1}{2} < 1$, then the self-diffeomorphism of $[0,1]$ 
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diff changeset
   823
given by $\frac{1}{2} (\phi_{J_1} \cup (1+ \phi_{J_2})) \circ \phi_{J_1 \cup J_2}^{-1}$.
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   824
You can readily check that this gluing map is associative on the nose. \todo{really?}
194
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diff changeset
   825
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   826
%First recall the \emph{coloured little intervals operad}. Given a set of labels $\cL$, the operations are indexed by \emph{decompositions of the interval}, each of which is a collection of disjoint subintervals $\{(a_i,b_i)\}_{i=1}^k$ of $[0,1]$, along with a labeling of the complementary regions by $\cL$, $\{l_0, \ldots, l_k\}$.  Given two decompositions $\cJ^{(1)}$ and $\cJ^{(2)}$, and an index $m$ such that $l^{(1)}_{m-1} = l^{(2)}_0$ and $l^{(1)}_{m} = l^{(2)}_{k^{(2)}}$, we can form a new decomposition by inserting the intervals of $\cJ^{(2)}$ linearly inside the $m$-th interval of $\cJ^{(1)}$. We call the resulting decomposition $\cJ^{(1)} \circ_m \cJ^{(2)}$.
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   827
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diff changeset
   828
%\begin{defn}
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diff changeset
   829
%A \emph{topological $A_\infty$ category} $\cC$ has a set of objects $\Obj(\cC)$ and for each $a,b \in \Obj(\cC)$ a chain complex $\cC_{a,b}$, along with a compatible `composition map' and an `action of families of diffeomorphisms'.
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diff changeset
   830
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   831
%A \emph{composition map} $f$ is a family of chain maps, one for each decomposition of the interval, $f_\cJ : A^{\tensor k} \to A$, making $\cC$ into a category over the coloured little intervals operad, with labels $\cL = \Obj(\cC)$. Thus the chain maps satisfy the identity 
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   832
%\begin{equation*}
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   833
%f_{\cJ^{(1)} \circ_m \cJ^{(2)}} = f_{\cJ^{(1)}} \circ (\id^{\tensor m-1} \tensor f_{\cJ^{(2)}} \tensor \id^{\tensor k^{(1)} - m}).
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   834
%\end{equation*}
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   835
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   836
%An \emph{action of families of diffeomorphisms} is a chain map $ev: \CD{[0,1]} \tensor A \to A$, such that 
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   837
%\begin{enumerate}
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   838
%\item The diagram 
scott@6e1638ff-ae45-0410-89bd-df963105f760
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   839
%\begin{equation*}
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   840
%\xymatrix{
scott@6e1638ff-ae45-0410-89bd-df963105f760
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   841
%\CD{[0,1]} \tensor \CD{[0,1]} \tensor A \ar[r]^{\id \tensor ev} \ar[d]^{\circ \tensor \id} & \CD{[0,1]} \tensor A \ar[d]^{ev} \\
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   842
%\CD{[0,1]} \tensor A \ar[r]^{ev} & A
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   843
%}
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   844
%\end{equation*}
scott@6e1638ff-ae45-0410-89bd-df963105f760
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   845
%commutes up to weakly unique homotopy.
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diff changeset
   846
%\item If $\phi \in \Diff([0,1])$ and $\cJ$ is a decomposition of the interval, we obtain a new decomposition $\phi(\cJ)$ and a collection $\phi_m \in \Diff([0,1])$ of diffeomorphisms obtained by taking the restrictions $\restrict{\phi}{[a_m,b_m]} : [a_m,b_m] \to [\phi(a_m),\phi(b_m)]$ and pre- and post-composing these with the linear diffeomorphisms $[0,1] \to [a_m,b_m]$ and $[\phi(a_m),\phi(b_m)] \to [0,1]$. We require that
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diff changeset
   847
%\begin{equation*}
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   848
%\phi(f_\cJ(a_1, \cdots, a_k)) = f_{\phi(\cJ)}(\phi_1(a_1), \cdots, \phi_k(a_k)).
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diff changeset
   849
%\end{equation*}
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diff changeset
   850
%\end{enumerate}
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   851
%\end{defn}
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diff changeset
   852
345
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   853
From a topological $A_\infty$ category on $[0,1]$ $\cC$ we can produce a `conventional' 
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   854
$A_\infty$ category $(A, \{m_k\})$ as defined in, for example, \cite{MR1854636}.
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   855
We'll just describe the algebra case (that is, a category with only one object), 
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   856
as the modifications required to deal with multiple objects are trivial.
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   857
Define $A = \cC$ as a chain complex (so $m_1 = d$).
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   858
Define $m_2 : A\tensor A \to A$ by $f_{\{(0,\frac{1}{2}),(\frac{1}{2},1)\}}$.
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diff changeset
   859
To define $m_3$, we begin by taking the one parameter family $\phi_3$ of diffeomorphisms 
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diff changeset
   860
of $[0,1]$ that interpolates linearly between the identity and the piecewise linear 
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diff changeset
   861
diffeomorphism taking $\frac{1}{4}$ to $\frac{1}{2}$ and $\frac{1}{2}$ to $\frac{3}{4}$, and then define
194
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   862
\begin{equation*}
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   863
m_3(a,b,c) = ev(\phi_3, m_2(m_2(a,b), c)).
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   864
\end{equation*}
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   865
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   866
It's then easy to calculate that
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   867
\begin{align*}
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   868
d(m_3(a,b,c)) & = ev(d \phi_3, m_2(m_2(a,b),c)) - ev(\phi_3 d m_2(m_2(a,b), c)) \\
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   869
 & = ev( \phi_3(1), m_2(m_2(a,b),c)) - ev(\phi_3(0), m_2 (m_2(a,b),c)) - \\ & \qquad - ev(\phi_3, m_2(m_2(da, b), c) + (-1)^{\deg a} m_2(m_2(a, db), c) + \\ & \qquad \quad + (-1)^{\deg a+\deg b} m_2(m_2(a, b), dc) \\
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   870
 & = m_2(a , m_2(b,c)) - m_2(m_2(a,b),c) - \\ & \qquad - m_3(da,b,c) + (-1)^{\deg a + 1} m_3(a,db,c) + \\ & \qquad \quad + (-1)^{\deg a + \deg b + 1} m_3(a,b,dc), \\
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   871
\intertext{and thus that}
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   872
m_1 \circ m_3 & =  m_2 \circ (\id \tensor m_2) - m_2 \circ (m_2 \tensor \id) - \\ & \qquad - m_3 \circ (m_1 \tensor \id \tensor \id) - m_3 \circ (\id \tensor m_1 \tensor \id) - m_3 \circ (\id \tensor \id \tensor m_1)
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   873
\end{align*}
scott@6e1638ff-ae45-0410-89bd-df963105f760
parents: 169
diff changeset
   874
as required (c.f. \cite[p. 6]{MR1854636}).
scott@6e1638ff-ae45-0410-89bd-df963105f760
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diff changeset
   875
\todo{then the general case.}
345
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diff changeset
   876
We won't describe a reverse construction (producing a topological $A_\infty$ category 
477
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   877
from a ``conventional" $A_\infty$ category), but we presume that this will be easy for the experts.
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   878
86c8e2129355 radically shorter a-inf appendix
Kevin Walker <kevin@canyon23.net>
parents: 457
diff changeset
   879
} %%%%% end \noop %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%