text/evmap.tex
author Kevin Walker <kevin@canyon23.net>
Sun, 22 Aug 2010 21:10:39 -0700
changeset 514 bb696f417f22
parent 513 a9ac20b0a0c2
child 515 9e44c1469918
permissions -rw-r--r--
starting yet again on evmap
Ignore whitespace changes - Everywhere: Within whitespace: At end of lines:
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
     1
%!TEX root = ../blob1.tex
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
     2
512
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
     3
\section{Action of \texorpdfstring{$\CH{X}$}{C_*(Homeo(M))}}
100
c5a43be00ed4 No new content, just rearranging (and procrastinating)
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 92
diff changeset
     4
\label{sec:evaluation}
c5a43be00ed4 No new content, just rearranging (and procrastinating)
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 92
diff changeset
     5
512
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
     6
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
     7
\nn{new plan: use the sort-of-simplicial space version of
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
     8
the blob complex.
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
     9
first define it, then show it's hty equivalent to the other def, then observe that
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
    10
$CH*$ acts.
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
    11
maybe salvage some of the original version of this section as a subsection outlining
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
    12
how one might proceed directly.}
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
    13
513
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    14
In this section we extend the action of homeomorphisms on $\bc_*(X)$
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    15
to an action of {\it families} of homeomorphisms.
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    16
That is, for each pair of homeomorphic manifolds $X$ and $Y$
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    17
we define a chain map
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    18
\[
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    19
    e_{XY} : CH_*(X, Y) \otimes \bc_*(X) \to \bc_*(Y) ,
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    20
\]
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    21
where $CH_*(X, Y) = C_*(\Homeo(X, Y))$, the singular chains on the space
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    22
of homeomorphisms from $X$ to $Y$.
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    23
(If $X$ and $Y$ have non-empty boundary, these families of homeomorphisms
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    24
are required to be fixed on the boundaries.)
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    25
See \S \ref{ss:emap-def} for a more precise statement.
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    26
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    27
The most convenient way to prove that maps $e_{XY}$ with the desired properties exist is to 
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    28
introduce a homotopy equivalent alternate version of the blob complex $\btc_*(X)$
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    29
which is more amenable to this sort of action.
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    30
Recall from Remark \ref{blobsset-remark} that blob diagrams
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    31
have the structure of a sort-of-simplicial set.
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    32
Blob diagrams can also be equipped with a natural topology, which converts this
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    33
sort-of-simplicial set into a sort-of-simplicial space.
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    34
Taking singular chains of this space we get $\btc_*(X)$.
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    35
The details are in \S \ref{ss:alt-def}.
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    36
For technical reasons we also show that requiring the blobs to be
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    37
embedded yields a homotopy equivalent complex.
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    38
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    39
Since $\bc_*(X)$ and $\btc_*(X)$ are homotopy equivalent one could try to construct
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    40
the $CH_*$ actions directly in terms of $\bc_*(X)$.
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    41
This was our original approach, but working out the details created a nearly unreadable mess.
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    42
We have salvaged a sketch of that approach in \S \ref{ss:old-evmap-remnants}.
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    43
514
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    44
\nn{should revisit above intro after this section is done}
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    45
512
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
    46
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
    47
\subsection{Alternative definitions of the blob complex}
513
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
    48
\label{ss:alt-def}
512
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
    49
514
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    50
\newcommand\sbc{\bc^{\cU}}
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    51
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    52
In this subsection we define a subcomplex (small blobs) and supercomplex (families of blobs)
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    53
of the blob complex, and show that they are both homotopy equivalent to $\bc_*(X)$.
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    54
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    55
\medskip
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    56
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    57
If $b$ is a blob diagram in $\bc_*(X)$, define the {\it support} of $b$, denoted
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    58
$\supp(b)$ or $|b|$, to be the union of the blobs of $b$.
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    59
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    60
If $f: P\times X\to X$ is a family of homeomorphisms and $Y\sub X$, we say that $f$ is 
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    61
{\it supported on $Y$} if $f(p, x) = f(p', x)$ for all $x\in X\setmin Y$ and all $p,p'\in P$.
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    62
We will sometimes abuse language and talk about ``the" support of $f$,
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    63
again denoted $\supp(f)$ or $|f|$, to mean some particular choice of $Y$ such that
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    64
$f$ is supported on $Y$.
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    65
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    66
Fix $\cU$, an open cover of $X$.
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    67
Define the ``small blob complex" $\bc^{\cU}_*(M)$ to be the subcomplex of $\bc_*(X)$ 
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    68
of all blob diagrams in which every blob is contained in some open set of $\cU$, 
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    69
and moreover each field labeling a region cut out by the blobs is splittable 
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    70
into fields on smaller regions, each of which is contained in some open set of $\cU$.
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    71
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    72
\begin{thm}[Small blobs] \label{thm:small-blobs-xx}
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    73
The inclusion $i: \bc^{\cU}_*(M) \into \bc_*(M)$ is a homotopy equivalence.
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    74
\end{thm}
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    75
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    76
\begin{proof}
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    77
It suffices to show that for any finitely generated pair of subcomplexes 
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    78
$(C_*, D_*) \sub (\bc_*(X), \sbc_*(X))$
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    79
we can find a homotopy $h:C_*\to \bc_*(X)$ such that $h(D_*) \sub \sbc_*(X)$
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    80
and $x + h\bd(x) + \bd h(X) \in \sbc_*(X)_*(X)$ for all $x\in C_*$.
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    81
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    82
For simplicity we will assume that all fields are splittable into small pieces, so that
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    83
$\sbc_0(X) = \bc_0$.
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    84
Accordingly, we define $h_0 = 0$.
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    85
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    86
Let $b\in C_1$ be a 1-blob diagram.
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    87
Let $\cV_1$ be an auxiliary open cover of $X$, satisfying conditions specified below.
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    88
Let $B$ be the blob of $b$.
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    89
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    90
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    91
\nn{...}
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    92
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    93
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    94
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    95
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    96
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    97
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    98
%Let $k$ be the top dimension of $C_*$.
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
    99
%The construction of $h$ will involve choosing various
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
   100
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
   101
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
   102
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
   103
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
   104
\end{proof}
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
   105
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
   106
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
   107
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
   108
bb696f417f22 starting yet again on evmap
Kevin Walker <kevin@canyon23.net>
parents: 513
diff changeset
   109
512
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
   110
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
   111
\subsection{Action of \texorpdfstring{$\CH{X}$}{C_*(Homeo(M))}}
513
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
   112
\label{ss:emap-def}
512
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
   113
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
   114
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
   115
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
   116
\subsection{[older version still hanging around]}
513
a9ac20b0a0c2 intro to evmap
Kevin Walker <kevin@canyon23.net>
parents: 512
diff changeset
   117
\label{ss:old-evmap-remnants}
512
050dba5e7bdd fixing some (but not all!?) of the hyperref warnings; start on revision of evmap
Kevin Walker <kevin@canyon23.net>
parents: 494
diff changeset
   118
246
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   119
\nn{should comment at the start about any assumptions about smooth, PL etc.}
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   120
447
ba4f86b15ff0 more a-inf section
Kevin Walker <kevin@canyon23.net>
parents: 438
diff changeset
   121
\nn{should maybe mention alternate def of blob complex (sort-of-simplicial space instead of
ba4f86b15ff0 more a-inf section
Kevin Walker <kevin@canyon23.net>
parents: 438
diff changeset
   122
sort-of-simplicial set) where this action would be easy}
ba4f86b15ff0 more a-inf section
Kevin Walker <kevin@canyon23.net>
parents: 438
diff changeset
   123
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   124
Let $CH_*(X, Y)$ denote $C_*(\Homeo(X \to Y))$, the singular chain complex of
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   125
the space of homeomorphisms
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   126
between the $n$-manifolds $X$ and $Y$ (any given singular chain extends a fixed homeomorphism $\bd X \to \bd Y$).
249
daf58017eec5 evmap; small edits
Kevin Walker <kevin@canyon23.net>
parents: 248
diff changeset
   127
We also will use the abbreviated notation $CH_*(X) \deq CH_*(X, X)$.
daf58017eec5 evmap; small edits
Kevin Walker <kevin@canyon23.net>
parents: 248
diff changeset
   128
(For convenience, we will permit the singular cells generating $CH_*(X, Y)$ to be more general
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   129
than simplices --- they can be based on any linear polyhedron.
249
daf58017eec5 evmap; small edits
Kevin Walker <kevin@canyon23.net>
parents: 248
diff changeset
   130
\nn{be more restrictive here?  does more need to be said?})
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   131
437
93ce0ba3d2d7 revisions to \S 1-5
Scott Morrison <scott@tqft.net>
parents: 430
diff changeset
   132
\begin{thm}  \label{thm:CH}
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   133
For $n$-manifolds $X$ and $Y$ there is a chain map
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   134
\eq{
244
cf01e213044a start working on "evaluation map" section
Kevin Walker <kevin@canyon23.net>
parents: 236
diff changeset
   135
    e_{XY} : CH_*(X, Y) \otimes \bc_*(X) \to \bc_*(Y)
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   136
}
244
cf01e213044a start working on "evaluation map" section
Kevin Walker <kevin@canyon23.net>
parents: 236
diff changeset
   137
such that
cf01e213044a start working on "evaluation map" section
Kevin Walker <kevin@canyon23.net>
parents: 236
diff changeset
   138
\begin{enumerate}
cf01e213044a start working on "evaluation map" section
Kevin Walker <kevin@canyon23.net>
parents: 236
diff changeset
   139
\item on $CH_0(X, Y) \otimes \bc_*(X)$ it agrees with the obvious action of 
437
93ce0ba3d2d7 revisions to \S 1-5
Scott Morrison <scott@tqft.net>
parents: 430
diff changeset
   140
$\Homeo(X, Y)$ on $\bc_*(X)$  described in Property (\ref{property:functoriality}), and
244
cf01e213044a start working on "evaluation map" section
Kevin Walker <kevin@canyon23.net>
parents: 236
diff changeset
   141
\item for any compatible splittings $X\to X\sgl$ and $Y\to Y\sgl$, 
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   142
the following diagram commutes up to homotopy
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   143
\begin{equation*}
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   144
\xymatrix@C+2cm{
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   145
      CH_*(X, Y) \otimes \bc_*(X)
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   146
        \ar[r]_(.6){e_{XY}}  \ar[d]^{\gl \otimes \gl}   &
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   147
            \bc_*(Y)\ar[d]^{\gl} \\
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   148
     CH_*(X\sgl, Y\sgl) \otimes \bc_*(X\sgl) \ar[r]_(.6){e_{X\sgl Y\sgl}}   & 	\bc_*(Y\sgl)  
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   149
}
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   150
\end{equation*}
244
cf01e213044a start working on "evaluation map" section
Kevin Walker <kevin@canyon23.net>
parents: 236
diff changeset
   151
\end{enumerate}
453
e88e44347b36 weaking thm:CH for iterated homotopy
Scott Morrison <scott@tqft.net>
parents: 447
diff changeset
   152
Moreover, for any $m \geq 0$, we can find a family of chain maps $\{e_{XY}\}$ 
e88e44347b36 weaking thm:CH for iterated homotopy
Scott Morrison <scott@tqft.net>
parents: 447
diff changeset
   153
satisfying the above two conditions which is $m$-connected. In particular, this means that the choice of chain map above is unique up to homotopy.
437
93ce0ba3d2d7 revisions to \S 1-5
Scott Morrison <scott@tqft.net>
parents: 430
diff changeset
   154
\end{thm}
453
e88e44347b36 weaking thm:CH for iterated homotopy
Scott Morrison <scott@tqft.net>
parents: 447
diff changeset
   155
\begin{rem}
e88e44347b36 weaking thm:CH for iterated homotopy
Scott Morrison <scott@tqft.net>
parents: 447
diff changeset
   156
Note that the statement doesn't quite give uniqueness up to iterated homotopy. We fully expect that this should actually be the case, but haven't been able to prove this.
e88e44347b36 weaking thm:CH for iterated homotopy
Scott Morrison <scott@tqft.net>
parents: 447
diff changeset
   157
\end{rem}
e88e44347b36 weaking thm:CH for iterated homotopy
Scott Morrison <scott@tqft.net>
parents: 447
diff changeset
   158
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   159
345
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 303
diff changeset
   160
Before giving the proof, we state the essential technical tool of Lemma \ref{extension_lemma}, 
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 303
diff changeset
   161
and then give an outline of the method of proof.
303
2252c53bd449 minor changes in a few places
Scott Morrison <scott@tqft.net>
parents: 256
diff changeset
   162
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   163
Without loss of generality, we will assume $X = Y$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   164
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   165
\medskip
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   166
244
cf01e213044a start working on "evaluation map" section
Kevin Walker <kevin@canyon23.net>
parents: 236
diff changeset
   167
Let $f: P \times X \to X$ be a family of homeomorphisms (e.g. a generator of $CH_*(X)$)
cf01e213044a start working on "evaluation map" section
Kevin Walker <kevin@canyon23.net>
parents: 236
diff changeset
   168
and let $S \sub X$.
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   169
We say that {\it $f$ is supported on $S$} if $f(p, x) = f(q, x)$ for all
345
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 303
diff changeset
   170
$x \notin S$ and $p, q \in P$. Equivalently, $f$ is supported on $S$ if 
417
d3b05641e7ca making quotation marks consistently "American style"
Kevin Walker <kevin@canyon23.net>
parents: 415
diff changeset
   171
there is a family of homeomorphisms $f' : P \times S \to S$ and a ``background"
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   172
homeomorphism $f_0 : X \to X$ so that
245
7537032ad5a0 more evmap.tex; also testing using hg from office computer; also
Kevin Walker <kevin@canyon23.net>
parents: 244
diff changeset
   173
\begin{align*}
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   174
	f(p,s) & = f_0(f'(p,s)) \;\;\;\; \mbox{for}\; (p, s) \in P\times S \\
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   175
\intertext{and}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   176
	f(p,x) & = f_0(x) \;\;\;\; \mbox{for}\; (p, x) \in {P \times (X \setmin S)}.
245
7537032ad5a0 more evmap.tex; also testing using hg from office computer; also
Kevin Walker <kevin@canyon23.net>
parents: 244
diff changeset
   177
\end{align*}
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   178
Note that if $f$ is supported on $S$ then it is also supported on any $R \sup S$.
245
7537032ad5a0 more evmap.tex; also testing using hg from office computer; also
Kevin Walker <kevin@canyon23.net>
parents: 244
diff changeset
   179
(So when we talk about ``the" support of a family, there is some ambiguity,
7537032ad5a0 more evmap.tex; also testing using hg from office computer; also
Kevin Walker <kevin@canyon23.net>
parents: 244
diff changeset
   180
but this ambiguity will not matter to us.)
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   181
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   182
Let $\cU = \{U_\alpha\}$ be an open cover of $X$.
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   183
A $k$-parameter family of homeomorphisms $f: P \times X \to X$ is
245
7537032ad5a0 more evmap.tex; also testing using hg from office computer; also
Kevin Walker <kevin@canyon23.net>
parents: 244
diff changeset
   184
{\it adapted to $\cU$} 
7537032ad5a0 more evmap.tex; also testing using hg from office computer; also
Kevin Walker <kevin@canyon23.net>
parents: 244
diff changeset
   185
if the support of $f$ is contained in the union
7537032ad5a0 more evmap.tex; also testing using hg from office computer; also
Kevin Walker <kevin@canyon23.net>
parents: 244
diff changeset
   186
of at most $k$ of the $U_\alpha$'s.
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   187
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   188
\begin{lemma}  \label{extension_lemma}
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   189
Let $x \in CH_k(X)$ be a singular chain such that $\bd x$ is adapted to $\cU$.
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   190
Then $x$ is homotopic (rel boundary) to some $x' \in CH_k(X)$ which is adapted to $\cU$.
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   191
Furthermore, one can choose the homotopy so that its support is equal to the support of $x$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   192
\end{lemma}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   193
426
8aca80203f9d search & replace: s/((sub?)section|appendix)\s+\\ref/\S\ref/
Kevin Walker <kevin@canyon23.net>
parents: 417
diff changeset
   194
The proof will be given in \S\ref{sec:localising}.
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   195
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   196
\medskip
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   197
437
93ce0ba3d2d7 revisions to \S 1-5
Scott Morrison <scott@tqft.net>
parents: 430
diff changeset
   198
Before diving into the details, we outline our strategy for the proof of Theorem \ref{thm:CH}.
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   199
Let $p$ be a singular cell in $CH_k(X)$ and $b$ be a blob diagram in $\bc_*(X)$.
246
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   200
We say that $p\ot b$ is {\it localizable} if there exists $V \sub X$ such that
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   201
\begin{itemize}
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   202
\item $V$ is homeomorphic to a disjoint union of balls, and
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   203
\item $\supp(p) \cup \supp(b) \sub V$.
246
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   204
\end{itemize}
245
7537032ad5a0 more evmap.tex; also testing using hg from office computer; also
Kevin Walker <kevin@canyon23.net>
parents: 244
diff changeset
   205
(Recall that $\supp(b)$ is defined to be the union of the blobs of the diagram $b$.)
246
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   206
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   207
Assuming that $p\ot b$ is localizable as above, 
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   208
let $W = X \setmin V$, $W' = p(W)$ and $V' = X\setmin W'$.
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   209
We then have a factorization 
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   210
\[
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   211
	p = \gl(q, r),
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   212
\]
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   213
where $q \in CH_k(V, V')$ and $r \in CH_0(W, W')$.
73
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   214
We can also factorize $b = \gl(b_V, b_W)$, where $b_V\in \bc_*(V)$ and $b_W\in\bc_0(W)$.
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   215
According to the commutative diagram of the proposition, we must have
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   216
\[
73
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   217
	e_X(p\otimes b) = e_X(\gl(q\otimes b_V, r\otimes b_W)) = 
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   218
				gl(e_{VV'}(q\otimes b_V), e_{WW'}(r\otimes b_W)) .
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   219
\]
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   220
Since $r$ is a  0-parameter family of homeomorphisms, we must have
73
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   221
\[
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   222
	e_{WW'}(r\otimes b_W) = r(b_W),
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   223
\]
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   224
where $r(b_W)$ denotes the obvious action of homeomorphisms on blob diagrams (in
73
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   225
this case a 0-blob diagram).
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   226
Since $V'$ is a disjoint union of balls, $\bc_*(V')$ is acyclic in degrees $>0$ 
303
2252c53bd449 minor changes in a few places
Scott Morrison <scott@tqft.net>
parents: 256
diff changeset
   227
(by Properties \ref{property:disjoint-union} and \ref{property:contractibility}).
73
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   228
Assuming inductively that we have already defined $e_{VV'}(\bd(q\otimes b_V))$,
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   229
there is, up to (iterated) homotopy, a unique choice for $e_{VV'}(q\otimes b_V)$
73
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   230
such that 
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   231
\[
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   232
	\bd(e_{VV'}(q\otimes b_V)) = e_{VV'}(\bd(q\otimes b_V)) .
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   233
\]
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   234
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   235
Thus the conditions of the proposition determine (up to homotopy) the evaluation
246
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   236
map for localizable generators $p\otimes b$.
73
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   237
On the other hand, Lemma \ref{extension_lemma} allows us to homotope 
246
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   238
arbitrary generators to sums of localizable generators.
73
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   239
This (roughly) establishes the uniqueness part of the proposition.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   240
To show existence, we must show that the various choices involved in constructing
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   241
evaluation maps in this way affect the final answer only by a homotopy.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   242
246
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   243
Now for a little more detail.
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   244
(But we're still just motivating the full, gory details, which will follow.)
434
785e4953a811 minor evmap stuff
Kevin Walker <kevin@canyon23.net>
parents: 430
diff changeset
   245
Choose a metric on $X$, and let $\cU_\gamma$ be the open cover of $X$ by balls of radius $\gamma$.
246
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   246
By Lemma \ref{extension_lemma} we can restrict our attention to $k$-parameter families 
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   247
$p$ of homeomorphisms such that $\supp(p)$ is contained in the union of $k$ $\gamma$-balls.
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   248
For fixed blob diagram $b$ and fixed $k$, it's not hard to show that for $\gamma$ small enough
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   249
$p\ot b$ must be localizable.
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   250
On the other hand, for fixed $k$ and $\gamma$ there exist $p$ and $b$ such that $p\ot b$ is not localizable,
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   251
and for fixed $\gamma$ and $b$ there exist non-localizable $p\ot b$ for sufficiently large $k$.
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   252
Thus we will need to take an appropriate limit as $\gamma$ approaches zero.
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   253
246
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   254
The construction of $e_X$, as outlined above, depends on various choices, one of which 
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   255
is the choice, for each localizable generator $p\ot b$, 
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   256
of disjoint balls $V$ containing $\supp(p)\cup\supp(b)$.
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   257
Let $V'$ be another disjoint union of balls containing $\supp(p)\cup\supp(b)$,
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   258
and assume that there exists yet another disjoint union of balls $W$ containing 
246
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   259
$V\cup V'$.
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   260
Then we can use $W$ to construct a homotopy between the two versions of $e_X$ 
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   261
associated to $V$ and $V'$.
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   262
If we impose no constraints on $V$ and $V'$ then such a $W$ need not exist.
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   263
Thus we will insist below that $V$ (and $V'$) be contained in small metric neighborhoods
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   264
of $\supp(p)\cup\supp(b)$.
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   265
Because we want not mere homotopy uniqueness but iterated homotopy uniqueness,
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   266
we will similarly require that $W$ be contained in a slightly larger metric neighborhood of 
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   267
$\supp(p)\cup\supp(b)$, and so on.
0f8f38f79ccd more evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 245
diff changeset
   268
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   269
437
93ce0ba3d2d7 revisions to \S 1-5
Scott Morrison <scott@tqft.net>
parents: 430
diff changeset
   270
\begin{proof}[Proof of Theorem \ref{thm:CH}.]
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   271
We'll use the notation $|b| = \supp(b)$ and $|p| = \supp(p)$.
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   272
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   273
Choose a metric on $X$.
434
785e4953a811 minor evmap stuff
Kevin Walker <kevin@canyon23.net>
parents: 430
diff changeset
   274
Choose a monotone decreasing sequence of positive real numbers $\ep_i$ converging to zero
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   275
(e.g.\ $\ep_i = 2^{-i}$).
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   276
Choose another sequence of positive real numbers $\delta_i$ such that $\delta_i/\ep_i$
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   277
converges monotonically to zero (e.g.\ $\delta_i = \ep_i^2$).
88
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   278
Let $\phi_l$ be an increasing sequence of positive numbers
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   279
satisfying the inequalities of Lemma \ref{xx2phi} below.
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   280
Given a generator $p\otimes b$ of $CH_*(X)\otimes \bc_*(X)$ and non-negative integers $i$ and $l$
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   281
define
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   282
\[
88
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   283
	N_{i,l}(p\ot b) \deq \Nbd_{l\ep_i}(|b|) \cup \Nbd_{\phi_l\delta_i}(|p|).
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   284
\]
247
f090fd0a12cd more evmap.tex
Kevin Walker <kevin@canyon23.net>
parents: 246
diff changeset
   285
In other words, for each $i$
f090fd0a12cd more evmap.tex
Kevin Walker <kevin@canyon23.net>
parents: 246
diff changeset
   286
we use the metric to choose nested neighborhoods of $|b|\cup |p|$ (parameterized
88
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   287
by $l$), with $\ep_i$ controlling the size of the buffers around $|b|$ and $\delta_i$ controlling
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   288
the size of the buffers around $|p|$.
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   289
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   290
Next we define subcomplexes $G_*^{i,m} \sub CH_*(X)\otimes \bc_*(X)$.
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   291
Let $p\ot b$ be a generator of $CH_*(X)\otimes \bc_*(X)$ and let $k = \deg(p\ot b)
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   292
= \deg(p) + \deg(b)$.
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   293
We say $p\ot b$ is in $G_*^{i,m}$ exactly when either (a) $\deg(p) = 0$ or (b)
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   294
there exist codimension-zero submanifolds $V_0,\ldots,V_m \sub X$ such that each $V_j$
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   295
is homeomorphic to a disjoint union of balls and
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   296
\[
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   297
	N_{i,k}(p\ot b) \subeq V_0 \subeq N_{i,k+1}(p\ot b)
434
785e4953a811 minor evmap stuff
Kevin Walker <kevin@canyon23.net>
parents: 430
diff changeset
   298
			\subeq V_1 \subeq \cdots \subeq V_m \subeq N_{i,k+m+1}(p\ot b) ,
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   299
\]
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   300
and further $\bd(p\ot b) \in G_*^{i,m}$.
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   301
We also require that $b$ is splitable (transverse) along the boundary of each $V_l$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   302
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   303
Note that $G_*^{i,m+1} \subeq G_*^{i,m}$.
73
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   304
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   305
As sketched above and explained in detail below, 
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   306
$G_*^{i,m}$ is a subcomplex where it is easy to define
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   307
the evaluation map.
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   308
The parameter $m$ controls the number of iterated homotopies we are able to construct
87
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 86
diff changeset
   309
(see Lemma \ref{m_order_hty}).
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   310
The larger $i$ is (i.e.\ the smaller $\ep_i$ is), the better $G_*^{i,m}$ approximates all of
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   311
$CH_*(X)\ot \bc_*(X)$ (see Lemma \ref{Gim_approx}).
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   312
249
daf58017eec5 evmap; small edits
Kevin Walker <kevin@canyon23.net>
parents: 248
diff changeset
   313
Next we define a chain map (dependent on some choices) $e_{i,m}: G_*^{i,m} \to \bc_*(X)$.
daf58017eec5 evmap; small edits
Kevin Walker <kevin@canyon23.net>
parents: 248
diff changeset
   314
(When the domain is clear from context we will drop the subscripts and write
daf58017eec5 evmap; small edits
Kevin Walker <kevin@canyon23.net>
parents: 248
diff changeset
   315
simply  $e: G_*^{i,m} \to \bc_*(X)$).
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   316
Let $p\ot b \in G_*^{i,m}$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   317
If $\deg(p) = 0$, define
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   318
\[
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   319
	e(p\ot b) = p(b) ,
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   320
\]
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   321
where $p(b)$ denotes the obvious action of the homeomorphism(s) $p$ on the blob diagram $b$.
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   322
For general $p\ot b$ ($\deg(p) \ge 1$) assume inductively that we have already defined
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   323
$e(p'\ot b')$ when $\deg(p') + \deg(b') < k = \deg(p) + \deg(b)$.
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   324
Choose $V = V_0$ as above so that 
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   325
\[
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   326
	N_{i,k}(p\ot b) \subeq V \subeq N_{i,k+1}(p\ot b) .
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   327
\]
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   328
Let $\bd(p\ot b) = \sum_j p_j\ot b_j$, and let $V^j$ be the choice of neighborhood
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   329
of $|p_j|\cup |b_j|$ made at the preceding stage of the induction.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   330
For all $j$, 
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   331
\[
88
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   332
	V^j \subeq N_{i,k}(p_j\ot b_j) \subeq N_{i,k}(p\ot b) \subeq V .
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   333
\]
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   334
(The second inclusion uses the facts that $|p_j| \subeq |p|$ and $|b_j| \subeq |b|$.)
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   335
We therefore have splittings
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   336
\[
247
f090fd0a12cd more evmap.tex
Kevin Walker <kevin@canyon23.net>
parents: 246
diff changeset
   337
	p = p'\bullet p'' , \;\; b = b'\bullet b'' , \;\; e(\bd(p\ot b)) = f'\bullet f'' ,
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   338
\]
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   339
where $p' \in CH_*(V)$, $p'' \in CH_*(X\setmin V)$, 
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   340
$b' \in \bc_*(V)$, $b'' \in \bc_*(X\setmin V)$, 
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   341
$f' \in \bc_*(p(V))$, and $f'' \in \bc_*(p(X\setmin V))$.
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   342
(Note that since the family of homeomorphisms $p$ is constant (independent of parameters)
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   343
near $\bd V$, the expressions $p(V) \sub X$ and $p(X\setmin V) \sub X$ are
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   344
unambiguous.)
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   345
We have $\deg(p'') = 0$ and, inductively, $f'' = p''(b'')$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   346
%We also have that $\deg(b'') = 0 = \deg(p'')$.
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   347
Choose $x' \in \bc_*(p(V))$ such that $\bd x' = f'$.
402
853376c08d76 a bunch of minor changes
Scott Morrison <scott@tqft.net>
parents: 400
diff changeset
   348
This is possible by Properties \ref{property:disjoint-union} and \ref{property:contractibility}  and the fact that isotopic fields
415
8dedd2914d10 starting to revise ncat section
Kevin Walker <kevin@canyon23.net>
parents: 413
diff changeset
   349
differ by a local relation.
83
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   350
Finally, define
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   351
\[
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   352
	e(p\ot b) \deq x' \bullet p''(b'') .
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 73
diff changeset
   353
\]
73
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 70
diff changeset
   354
492
833bd74143a4 put in a stub appendix for MoAM, but I'm going to go do other things next
Scott Morrison <scott@tqft.net>
parents: 453
diff changeset
   355
Note that above we are essentially using the method of acyclic models \nn{\S \ref{sec:moam}}.
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   356
For each generator $p\ot b$ we specify the acyclic (in positive degrees) 
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   357
target complex $\bc_*(p(V)) \bullet p''(b'')$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   358
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   359
The definition of $e: G_*^{i,m} \to \bc_*(X)$ depends on two sets of choices:
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   360
The choice of neighborhoods $V$ and the choice of inverse boundaries $x'$.
88
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   361
The next lemma shows that up to (iterated) homotopy $e$ is independent
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   362
of these choices.
88
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   363
(Note that independence of choices of $x'$ (for fixed choices of $V$)
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   364
is a standard result in the method of acyclic models.)
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   365
88
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   366
%\begin{lemma}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   367
%Let $\tilde{e} :  G_*^{i,m} \to \bc_*(X)$ be a chain map constructed like $e$ above, but with
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   368
%different choices of $x'$ at each step.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   369
%(Same choice of $V$ at each step.)
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   370
%Then $e$ and $\tilde{e}$ are homotopic via a homotopy in $\bc_*(p(V)) \bullet p''(b'')$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   371
%Any two choices of such a first-order homotopy are second-order homotopic, and so on, 
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   372
%to arbitrary order.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   373
%\end{lemma}
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   374
88
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   375
%\begin{proof}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   376
%This is a standard result in the method of acyclic models.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   377
%\nn{should we say more here?}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   378
%\nn{maybe this lemma should be subsumed into the next lemma.  probably it should.}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   379
%\end{proof}
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   380
87
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 86
diff changeset
   381
\begin{lemma} \label{m_order_hty}
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   382
Let $\tilde{e} :  G_*^{i,m} \to \bc_*(X)$ be a chain map constructed like $e$ above, but with
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   383
different choices of $V$ (and hence also different choices of $x'$) at each step.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   384
If $m \ge 1$ then $e$ and $\tilde{e}$ are homotopic.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   385
If $m \ge 2$ then any two choices of this first-order homotopy are second-order homotopic.
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   386
Continuing, $e :  G_*^{i,m} \to \bc_*(X)$ is well-defined up to $m$-th order homotopy.
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   387
\end{lemma}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   388
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   389
\begin{proof}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   390
We construct $h: G_*^{i,m} \to \bc_*(X)$ such that $\bd h + h\bd = e - \tilde{e}$.
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   391
The chain maps $e$ and $\tilde{e}$ coincide on bidegrees $(0, j)$, so define $h$
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   392
to be zero there.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   393
Assume inductively that $h$ has been defined for degrees less than $k$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   394
Let $p\ot b$ be a generator of degree $k$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   395
Choose $V_1$ as in the definition of $G_*^{i,m}$ so that
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   396
\[
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   397
	N_{i,k+1}(p\ot b) \subeq V_1 \subeq N_{i,k+2}(p\ot b) .
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   398
\]
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   399
There are splittings
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   400
\[
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   401
	p = p'_1\bullet p''_1 , \;\; b = b'_1\bullet b''_1 , 
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   402
			\;\; e(p\ot b) - \tilde{e}(p\ot b) - h(\bd(p\ot b)) = f'_1\bullet f''_1 ,
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   403
\]
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   404
where $p'_1 \in CH_*(V_1)$, $p''_1 \in CH_*(X\setmin V_1)$, 
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   405
$b'_1 \in \bc_*(V_1)$, $b''_1 \in \bc_*(X\setmin V_1)$, 
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   406
$f'_1 \in \bc_*(p(V_1))$, and $f''_1 \in \bc_*(p(X\setmin V_1))$.
88
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 87
diff changeset
   407
Inductively, $\bd f'_1 = 0$ and $f_1'' = p_1''(b_1'')$.
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   408
Choose $x'_1 \in \bc_*(p(V_1))$ so that $\bd x'_1 = f'_1$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   409
Define 
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   410
\[
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   411
	h(p\ot b) \deq x'_1 \bullet p''_1(b''_1) .
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   412
\]
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   413
This completes the construction of the first-order homotopy when $m \ge 1$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   414
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   415
The $j$-th order homotopy is constructed similarly, with $V_j$ replacing $V_1$ above.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   416
\end{proof}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   417
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   418
Note that on $G_*^{i,m+1} \subeq G_*^{i,m}$, we have defined two maps,
249
daf58017eec5 evmap; small edits
Kevin Walker <kevin@canyon23.net>
parents: 248
diff changeset
   419
$e_{i,m}$ and $e_{i,m+1}$.
daf58017eec5 evmap; small edits
Kevin Walker <kevin@canyon23.net>
parents: 248
diff changeset
   420
An easy variation on the above lemma shows that 
daf58017eec5 evmap; small edits
Kevin Walker <kevin@canyon23.net>
parents: 248
diff changeset
   421
the restrictions of $e_{i,m}$ and $e_{i,m+1}$ to $G_*^{i,m+1}$ are $m$-th 
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   422
order homotopic.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   423
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   424
Next we show how to homotope chains in $CH_*(X)\ot \bc_*(X)$ to one of the 
85
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   425
$G_*^{i,m}$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   426
Choose a monotone decreasing sequence of real numbers $\gamma_j$ converging to zero.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   427
Let $\cU_j$ denote the open cover of $X$ by balls of radius $\gamma_j$.
345
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 303
diff changeset
   428
Let $h_j: CH_*(X)\to CH_*(X)$ be a chain map homotopic to the identity whose image is 
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 303
diff changeset
   429
spanned by families of homeomorphisms with support compatible with $\cU_j$, 
c27e875508fd breaking long lines
Kevin Walker <kevin@canyon23.net>
parents: 303
diff changeset
   430
as described in Lemma \ref{extension_lemma}.
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   431
Recall that $h_j$ and also the homotopy connecting it to the identity do not increase
85
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   432
supports.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   433
Define
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   434
\[
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   435
	g_j \deq h_j\circ h_{j-1} \circ \cdots \circ h_1 .
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   436
\]
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   437
The next lemma says that for all generators $p\ot b$ we can choose $j$ large enough so that
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   438
$g_j(p)\ot b$ lies in $G_*^{i,m}$, for arbitrary $m$ and sufficiently large $i$ 
247
f090fd0a12cd more evmap.tex
Kevin Walker <kevin@canyon23.net>
parents: 246
diff changeset
   439
(depending on $b$, $\deg(p)$ and $m$).
f090fd0a12cd more evmap.tex
Kevin Walker <kevin@canyon23.net>
parents: 246
diff changeset
   440
%(Note: Don't confuse this $n$ with the top dimension $n$ used elsewhere in this paper.)
85
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   441
87
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 86
diff changeset
   442
\begin{lemma} \label{Gim_approx}
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   443
Fix a blob diagram $b$, a homotopy order $m$ and a degree $n$ for $CH_*(X)$.
85
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   444
Then there exists a constant $k_{bmn}$ such that for all $i \ge k_{bmn}$
255
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   445
there exists another constant $j_{ibmn}$ such that for all $j \ge j_{ibmn}$ and all $p\in CH_n(X)$ 
85
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   446
we have $g_j(p)\ot b \in G_*^{i,m}$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   447
\end{lemma}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   448
255
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   449
For convenience we also define $k_{bmp} = k_{bmn}$
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   450
and $j_{ibmp} = j_{ibmn}$ where $n=\deg(p)$.
254
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   451
Note that we may assume that
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   452
\[
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   453
	k_{bmp} \ge k_{alq}
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   454
\]
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   455
for all $l\ge m$ and all $q\ot a$ which appear in the boundary of $p\ot b$.
255
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   456
Additionally, we may assume that
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   457
\[
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   458
	j_{ibmp} \ge j_{ialq}
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   459
\]
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   460
for all $l\ge m$ and all $q\ot a$ which appear in the boundary of $p\ot b$.
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   461
254
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   462
85
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   463
\begin{proof}
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   464
453
e88e44347b36 weaking thm:CH for iterated homotopy
Scott Morrison <scott@tqft.net>
parents: 447
diff changeset
   465
There exists $\lambda > 0$ such that for every  subset $c$ of the blobs of $b$ the set $\Nbd_u(c)$ is homeomorphic to $|c|$ for all $u < \lambda$ .
434
785e4953a811 minor evmap stuff
Kevin Walker <kevin@canyon23.net>
parents: 430
diff changeset
   466
(Here we are using the fact that the blobs are 
785e4953a811 minor evmap stuff
Kevin Walker <kevin@canyon23.net>
parents: 430
diff changeset
   467
piecewise smooth or piecewise-linear and that $\bd c$ is collared.)
90
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   468
We need to consider all such $c$ because all generators appearing in
247
f090fd0a12cd more evmap.tex
Kevin Walker <kevin@canyon23.net>
parents: 246
diff changeset
   469
iterated boundaries of $p\ot b$ must be in $G_*^{i,m}$.)
85
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   470
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   471
Let $r = \deg(b)$ and 
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   472
\[
90
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   473
	t = r+n+m+1 = \deg(p\ot b) + m + 1.
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   474
\]
85
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   475
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   476
Choose $k = k_{bmn}$ such that
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   477
\[
248
9fc815360797 small # of evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 247
diff changeset
   478
	t\ep_k < \lambda
85
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   479
\]
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   480
and
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   481
\[
90
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   482
	n\cdot (2 (\phi_t + 1) \delta_k) < \ep_k .
85
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   483
\]
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   484
Let $i \ge k_{bmn}$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   485
Choose $j = j_i$ so that
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   486
\[
90
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   487
	\gamma_j < \delta_i
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   488
\]
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   489
and also so that $\phi_t \gamma_j$ is less than the constant $\rho(M)$ of Lemma \ref{xxzz11}.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   490
236
3feb6e24a518 changing diff to homeo
Scott Morrison <scott@tqft.net>
parents: 213
diff changeset
   491
Let $j \ge j_i$ and $p\in CH_n(X)$.
90
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   492
Let $q$ be a generator appearing in $g_j(p)$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   493
Note that $|q|$ is contained in a union of $n$ elements of the cover $\cU_j$,
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   494
which implies that $|q|$ is contained in a union of $n$ metric balls of radius $\delta_i$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   495
We must show that $q\ot b \in G_*^{i,m}$, which means finding neighborhoods
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   496
$V_0,\ldots,V_m \sub X$ of $|q|\cup |b|$ such that each $V_j$
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   497
is homeomorphic to a disjoint union of balls and
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   498
\[
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   499
	N_{i,n}(q\ot b) \subeq V_0 \subeq N_{i,n+1}(q\ot b)
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   500
			\subeq V_1 \subeq \cdots \subeq V_m \subeq N_{i,t}(q\ot b) .
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   501
\]
248
9fc815360797 small # of evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 247
diff changeset
   502
Recall that
9fc815360797 small # of evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 247
diff changeset
   503
\[
9fc815360797 small # of evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 247
diff changeset
   504
	N_{i,a}(q\ot b) \deq \Nbd_{a\ep_i}(|b|) \cup \Nbd_{\phi_a\delta_i}(|q|).
9fc815360797 small # of evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 247
diff changeset
   505
\]
90
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   506
By repeated applications of Lemma \ref{xx2phi} we can find neighborhoods $U_0,\ldots,U_m$
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   507
of $|q|$, each homeomorphic to a disjoint union of balls, with
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   508
\[
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   509
	\Nbd_{\phi_{n+l} \delta_i}(|q|) \subeq U_l \subeq \Nbd_{\phi_{n+l+1} \delta_i}(|q|) .
85
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   510
\]
248
9fc815360797 small # of evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 247
diff changeset
   511
The inequalities above guarantee that 
9fc815360797 small # of evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 247
diff changeset
   512
for each $0\le l\le m$ we can find $u_l$ with 
90
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   513
\[
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   514
	(n+l)\ep_i \le u_l \le (n+l+1)\ep_i
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   515
\]
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   516
such that each component of $U_l$ is either disjoint from $\Nbd_{u_l}(|b|)$ or contained in 
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   517
$\Nbd_{u_l}(|b|)$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   518
This is because there are at most $n$ components of $U_l$, and each component
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   519
has radius $\le (\phi_t + 1) \delta_i$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   520
It follows that
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   521
\[
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   522
	V_l \deq \Nbd_{u_l}(|b|) \cup U_l
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   523
\]
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   524
is homeomorphic to a disjoint union of balls and satisfies
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   525
\[
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   526
	N_{i,n+l}(q\ot b) \subeq V_l \subeq N_{i,n+l+1}(q\ot b) .
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   527
\]
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   528
90
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   529
The same argument shows that each generator involved in iterated boundaries of $q\ot b$
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 89
diff changeset
   530
is in $G_*^{i,m}$.
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   531
\end{proof}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   532
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   533
In the next three lemmas, which provide the estimates needed above, we have made no effort to optimize the various bounds.
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   534
(The bounds are, however, optimal in the sense of minimizing the amount of work
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   535
we do.  Equivalently, they are the first bounds we thought of.)
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   536
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   537
We say that a subset $S$ of a metric space has radius $\le r$ if $S$ is contained in
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   538
some metric ball of radius $r$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   539
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   540
\begin{lemma}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   541
Let $S \sub \ebb^n$ (Euclidean $n$-space) have radius $\le r$.  
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   542
Then $\Nbd_a(S)$ is homeomorphic to a ball for $a \ge 2r$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   543
\end{lemma}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   544
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   545
\begin{proof} \label{xxyy2}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   546
Let $S$ be contained in $B_r(y)$, $y \in \ebb^n$.
89
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   547
Note that if $a \ge 2r$ then $\Nbd_a(S) \sup B_r(y)$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   548
Let $z\in \Nbd_a(S) \setmin B_r(y)$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   549
Consider the triangle
494
cb76847c439e many small fixes in ncat.tex
Scott Morrison <scott@tqft.net>
parents: 492
diff changeset
   550
with vertices $z$, $y$ and $s$ with $s\in S$ such that $z \in B_a(s)$.
89
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   551
The length of the edge $yz$ is greater than $r$ which is greater
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   552
than the length of the edge $ys$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   553
It follows that the angle at $z$ is less than $\pi/2$ (less than $\pi/3$, in fact),
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   554
which means that points on the edge $yz$ near $z$ are closer to $s$ than $z$ is,
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   555
which implies that these points are also in $\Nbd_a(S)$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   556
Hence $\Nbd_a(S)$ is star-shaped with respect to $y$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   557
\end{proof}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   558
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   559
If we replace $\ebb^n$ above with an arbitrary compact Riemannian manifold $M$,
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   560
the same result holds, so long as $a$ is not too large:
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   561
\nn{replace this with a PL version}
89
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   562
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   563
\begin{lemma} \label{xxzz11}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   564
Let $M$ be a compact Riemannian manifold.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   565
Then there is a constant $\rho(M)$ such that for all
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   566
subsets $S\sub M$ of radius $\le r$ and all $a$ such that $2r \le a \le \rho(M)$,
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   567
$\Nbd_a(S)$ is homeomorphic to a ball.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   568
\end{lemma}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   569
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   570
\begin{proof}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   571
Choose $\rho = \rho(M)$ such that $3\rho/2$ is less than the radius of injectivity of $M$,
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   572
and also so that for any point $y\in M$ the geodesic coordinates of radius $3\rho/2$ around
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   573
$y$ distort angles by only a small amount.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   574
Now the argument of the previous lemma works.
85
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   575
\end{proof}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   576
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 84
diff changeset
   577
89
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   578
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   579
\begin{lemma} \label{xx2phi}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   580
Let $S \sub M$ be contained in a union (not necessarily disjoint)
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   581
of $k$ metric balls of radius $r$.
89
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   582
Let $\phi_1, \phi_2, \ldots$ be an increasing sequence of real numbers satisfying
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   583
$\phi_1 \ge 2$ and $\phi_{i+1} \ge \phi_i(2\phi_i + 2) + \phi_i$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   584
For convenience, let $\phi_0 = 0$.
248
9fc815360797 small # of evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 247
diff changeset
   585
Assume also that $\phi_k r \le \rho(M)$,
9fc815360797 small # of evmap edits
Kevin Walker <kevin@canyon23.net>
parents: 247
diff changeset
   586
where $\rho(M)$ is as in Lemma \ref{xxzz11}.
89
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   587
Then there exists a neighborhood $U$ of $S$,
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   588
homeomorphic to a disjoint union of balls, such that
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   589
\[
89
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   590
	\Nbd_{\phi_{k-1} r}(S) \subeq U \subeq \Nbd_{\phi_k r}(S) .
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   591
\]
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   592
\end{lemma}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   593
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   594
\begin{proof}
89
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   595
For $k=1$ this follows from Lemma \ref{xxzz11}.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   596
Assume inductively that it holds for $k-1$.
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   597
Partition $S$ into $k$ disjoint subsets $S_1,\ldots,S_k$, each of radius $\le r$.
89
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   598
By Lemma \ref{xxzz11}, each $\Nbd_{\phi_{k-1} r}(S_i)$ is homeomorphic to a ball.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   599
If these balls are disjoint, let $U$ be their union.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   600
Otherwise, assume WLOG that $S_{k-1}$ and $S_k$ are distance less than $2\phi_{k-1}r$ apart.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   601
Let $R_i = \Nbd_{\phi_{k-1} r}(S_i)$ for $i = 1,\ldots,k-2$ 
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   602
and $R_{k-1} = \Nbd_{\phi_{k-1} r}(S_{k-1})\cup \Nbd_{\phi_{k-1} r}(S_k)$.
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   603
Each $R_i$ is contained in a metric ball of radius $r' \deq (2\phi_{k-1}+2)r$.
91
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 90
diff changeset
   604
Note that the defining inequality of the $\phi_i$ guarantees that
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 90
diff changeset
   605
\[
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 90
diff changeset
   606
	\phi_{k-1}r' = \phi_{k-1}(2\phi_{k-1}+2)r \le \phi_k r \le \rho(M) .
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 90
diff changeset
   607
\]
89
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   608
By induction, there is a neighborhood $U$ of $R \deq \bigcup_i R_i$, 
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   609
homeomorphic to a disjoint union
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   610
of balls, and such that
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   611
\[
89
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   612
	U \subeq \Nbd_{\phi_{k-1}r'}(R) = \Nbd_{t}(S) \subeq \Nbd_{\phi_k r}(S) ,
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   613
\]
89
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 88
diff changeset
   614
where $t = \phi_{k-1}(2\phi_{k-1}+2)r + \phi_{k-1} r$.
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   615
\end{proof}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   616
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   617
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   618
We now return to defining the chain maps $e_X$.
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   619
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   620
254
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   621
Let $R_*$ be the chain complex with a generating 0-chain for each non-negative
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   622
integer and a generating 1-chain connecting each adjacent pair $(j, j+1)$.
358
8589275ac65b CH_* action -- gluing compatibility
Kevin Walker <kevin@canyon23.net>
parents: 357
diff changeset
   623
(So $R_*$ is a simplicial version of the non-negative reals.)
254
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   624
Denote the 0-chains by $j$ (for $j$ a non-negative integer) and the 1-chain connecting $j$ and $j+1$
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   625
by $\iota_j$.
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   626
Define a map (homotopy equivalence)
250
c6ea1c9c504e evmap: assembly
Kevin Walker <kevin@canyon23.net>
parents: 249
diff changeset
   627
\[
254
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   628
	\sigma: R_*\ot CH_*(X, X) \otimes \bc_*(X) \to CH_*(X, X)\ot \bc_*(X)
250
c6ea1c9c504e evmap: assembly
Kevin Walker <kevin@canyon23.net>
parents: 249
diff changeset
   629
\]
254
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   630
as follows.
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   631
On $R_0\ot CH_*(X, X) \otimes \bc_*(X)$ we define
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   632
\[
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   633
	\sigma(j\ot p\ot b) = g_j(p)\ot b .
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   634
\]
255
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   635
On $R_1\ot CH_*(X, X) \otimes \bc_*(X)$ we define
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   636
\[
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   637
	\sigma(\iota_j\ot p\ot b) = f_j(p)\ot b ,
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   638
\]
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   639
where $f_j$ is the homotopy from $g_j$ to $g_{j+1}$.
86
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 85
diff changeset
   640
254
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   641
Next we specify subcomplexes $G^m_* \sub R_*\ot CH_*(X, X) \otimes \bc_*(X)$ on which we will eventually
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   642
define a version of the action map $e_X$.
255
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   643
A generator $j\ot p\ot b$ is defined to be in $G^m_*$ if $j\ge j_{kbmp}$, where
254
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   644
$k = k_{bmp}$ is the constant from Lemma \ref{Gim_approx}.
255
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   645
Similarly $\iota_j\ot p\ot b$ is in $G^m_*$ if $j\ge j_{kbmp}$.
254
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   646
The inequality following Lemma \ref{Gim_approx} guarantees that $G^m_*$ is indeed a subcomplex
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   647
and that $G^m_* \sup G^{m+1}_*$.
250
c6ea1c9c504e evmap: assembly
Kevin Walker <kevin@canyon23.net>
parents: 249
diff changeset
   648
254
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   649
It is easy to see that each $G^m_*$ is homotopy equivalent (via the inclusion map) 
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   650
to $R_*\ot CH_*(X, X) \otimes \bc_*(X)$
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   651
and hence to $CH_*(X, X) \otimes \bc_*(X)$, and furthermore that the homotopies are well-defined
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   652
up to a contractible set of choices.
250
c6ea1c9c504e evmap: assembly
Kevin Walker <kevin@canyon23.net>
parents: 249
diff changeset
   653
254
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   654
Next we define a map
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   655
\[
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   656
	e_m : G^m_* \to \bc_*(X) .
Kevin Walker <kevin@canyon23.net>
parents: 253
diff changeset
   657
\]
255
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   658
Let $p\ot b$ be a generator of $G^m_*$.
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   659
Each $g_j(p)\ot b$ or $f_j(p)\ot b$ is a linear combination of generators $q\ot c$,
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   660
where $\supp(q)\cup\supp(c)$ is contained in a disjoint union of balls satisfying 
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   661
various conditions specified above.
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   662
As in the construction of the maps $e_{i,m}$ above,
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   663
it suffices to specify for each such $q\ot c$ a disjoint union of balls
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   664
$V_{qc} \sup \supp(q)\cup\supp(c)$, such that $V_{qc} \sup V_{q'c'}$
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   665
whenever $q'\ot c'$ appears in the boundary of $q\ot c$.
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   666
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   667
Let $q\ot c$ be a summand of $g_j(p)\ot b$, as above.
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   668
Let $i$ be maximal such that $j\ge j_{ibmp}$
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   669
(notation as in Lemma \ref{Gim_approx}).
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   670
Then $q\ot c \in G^{i,m}_*$ and we choose $V_{qc} \sup \supp(q)\cup\supp(c)$
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   671
such that 
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   672
\[
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   673
	N_{i,d}(q\ot c) \subeq V_{qc} \subeq N_{i,d+1}(q\ot c) ,
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   674
\]
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   675
where $d = \deg(q\ot c)$.
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   676
Let $\tilde q = f_j(q)$.
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   677
The summands of $f_j(p)\ot b$ have the form $\tilde q \ot c$, 
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   678
where $q\ot c$ is a summand of $g_j(p)\ot b$.
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   679
Since the homotopy $f_j$ does not increase supports, we also have that
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   680
\[
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   681
	V_{qc} \sup \supp(\tilde q) \cup \supp(c) .
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   682
\]
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   683
So we define $V_{\tilde qc} = V_{qc}$.
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   684
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   685
It is now easy to check that we have $V_{qc} \sup V_{q'c'}$
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   686
whenever $q'\ot c'$ appears in the boundary of $q\ot c$.
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   687
As in the construction of the maps $e_{i,m}$ above,
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   688
this allows us to construct a map
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   689
\[
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   690
	e_m : G^m_* \to \bc_*(X) 
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   691
\]
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   692
which is well-defined up to homotopy.
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   693
As in the proof of Lemma \ref{m_order_hty}, we can show that the map is well-defined up
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   694
to $m$-th order homotopy.
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   695
Put another way, we have specified an $m$-connected subcomplex of the complex of
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   696
all maps $G^m_* \to \bc_*(X)$.
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   697
On $G^{m+1}_* \sub G^m_*$ we have defined two maps, $e_m$ and $e_{m+1}$.
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   698
One can similarly (to the proof of Lemma \ref{m_order_hty}) show that 
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   699
these two maps agree up to $m$-th order homotopy.
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   700
More precisely, one can show that the subcomplex of maps containing the various
Kevin Walker <kevin@canyon23.net>
parents: 254
diff changeset
   701
$e_{m+1}$ candidates is contained in the corresponding subcomplex for $e_m$.
253
3816f6ce80a8 evmap; about to delete a few paragraphs, but committing just so there's
Kevin Walker <kevin@canyon23.net>
parents: 251
diff changeset
   702
358
8589275ac65b CH_* action -- gluing compatibility
Kevin Walker <kevin@canyon23.net>
parents: 357
diff changeset
   703
\medskip
8589275ac65b CH_* action -- gluing compatibility
Kevin Walker <kevin@canyon23.net>
parents: 357
diff changeset
   704
8589275ac65b CH_* action -- gluing compatibility
Kevin Walker <kevin@canyon23.net>
parents: 357
diff changeset
   705
Next we show that the action maps are compatible with gluing.
8589275ac65b CH_* action -- gluing compatibility
Kevin Walker <kevin@canyon23.net>
parents: 357
diff changeset
   706
Let $G^m_*$ and $\ol{G}^m_*$ be the complexes, as above, used for defining
8589275ac65b CH_* action -- gluing compatibility
Kevin Walker <kevin@canyon23.net>
parents: 357
diff changeset
   707
the action maps $e_{X\sgl}$ and $e_X$.
8589275ac65b CH_* action -- gluing compatibility
Kevin Walker <kevin@canyon23.net>
parents: 357
diff changeset
   708
The gluing map $X\sgl\to X$ induces a map
8589275ac65b CH_* action -- gluing compatibility
Kevin Walker <kevin@canyon23.net>
parents: 357
diff changeset
   709
\[
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   710
	\gl:  R_*\ot CH_*(X, X) \otimes \bc_*(X)  \to R_*\ot CH_*(X\sgl, X \sgl) \otimes \bc_*(X \sgl) ,
358
8589275ac65b CH_* action -- gluing compatibility
Kevin Walker <kevin@canyon23.net>
parents: 357
diff changeset
   711
\]
8589275ac65b CH_* action -- gluing compatibility
Kevin Walker <kevin@canyon23.net>
parents: 357
diff changeset
   712
and it is easy to see that $\gl(G^m_*)\sub \ol{G}^m_*$.
437
93ce0ba3d2d7 revisions to \S 1-5
Scott Morrison <scott@tqft.net>
parents: 430
diff changeset
   713
From this it follows that the diagram in the statement of Theorem \ref{thm:CH} commutes.
358
8589275ac65b CH_* action -- gluing compatibility
Kevin Walker <kevin@canyon23.net>
parents: 357
diff changeset
   714
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   715
\todo{this paragraph isn't very convincing, or at least I don't see what's going on}
358
8589275ac65b CH_* action -- gluing compatibility
Kevin Walker <kevin@canyon23.net>
parents: 357
diff changeset
   716
Finally we show that the action maps defined above are independent of
8589275ac65b CH_* action -- gluing compatibility
Kevin Walker <kevin@canyon23.net>
parents: 357
diff changeset
   717
the choice of metric (up to iterated homotopy).
359
6224e50c9311 metric independence for homeo action (proof done now)
Kevin Walker <kevin@canyon23.net>
parents: 358
diff changeset
   718
The arguments are very similar to ones given above, so we only sketch them.
6224e50c9311 metric independence for homeo action (proof done now)
Kevin Walker <kevin@canyon23.net>
parents: 358
diff changeset
   719
Let $g$ and $g'$ be two metrics on $X$, and let $e$ and $e'$ be the corresponding
6224e50c9311 metric independence for homeo action (proof done now)
Kevin Walker <kevin@canyon23.net>
parents: 358
diff changeset
   720
actions $CH_*(X, X) \ot \bc_*(X)\to\bc_*(X)$.
6224e50c9311 metric independence for homeo action (proof done now)
Kevin Walker <kevin@canyon23.net>
parents: 358
diff changeset
   721
We must show that $e$ and $e'$ are homotopic.
6224e50c9311 metric independence for homeo action (proof done now)
Kevin Walker <kevin@canyon23.net>
parents: 358
diff changeset
   722
As outlined in the discussion preceding this proof,
6224e50c9311 metric independence for homeo action (proof done now)
Kevin Walker <kevin@canyon23.net>
parents: 358
diff changeset
   723
this follows from the facts that both $e$ and $e'$ are compatible
6224e50c9311 metric independence for homeo action (proof done now)
Kevin Walker <kevin@canyon23.net>
parents: 358
diff changeset
   724
with gluing and that $\bc_*(B^n)$ is contractible.
6224e50c9311 metric independence for homeo action (proof done now)
Kevin Walker <kevin@canyon23.net>
parents: 358
diff changeset
   725
As above, we define a subcomplex $F_*\sub  CH_*(X, X) \ot \bc_*(X)$ generated
6224e50c9311 metric independence for homeo action (proof done now)
Kevin Walker <kevin@canyon23.net>
parents: 358
diff changeset
   726
by $p\ot b$ such that $|p|\cup|b|$ is contained in a disjoint union of balls.
6224e50c9311 metric independence for homeo action (proof done now)
Kevin Walker <kevin@canyon23.net>
parents: 358
diff changeset
   727
Using acyclic models, we can construct a homotopy from $e$ to $e'$ on $F_*$.
6224e50c9311 metric independence for homeo action (proof done now)
Kevin Walker <kevin@canyon23.net>
parents: 358
diff changeset
   728
We now observe that $CH_*(X, X) \ot \bc_*(X)$ retracts to $F_*$.
6224e50c9311 metric independence for homeo action (proof done now)
Kevin Walker <kevin@canyon23.net>
parents: 358
diff changeset
   729
Similar arguments show that this homotopy from $e$ to $e'$ is well-defined
6224e50c9311 metric independence for homeo action (proof done now)
Kevin Walker <kevin@canyon23.net>
parents: 358
diff changeset
   730
up to second order homotopy, and so on.
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   731
437
93ce0ba3d2d7 revisions to \S 1-5
Scott Morrison <scott@tqft.net>
parents: 430
diff changeset
   732
This completes the proof of Theorem \ref{thm:CH}.
84
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   733
\end{proof}
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   734
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents: 83
diff changeset
   735
396
f58d590e8a08 cross-references for the small blobs lemma
Scott Morrison <scott@tqft.net>
parents: 385
diff changeset
   736
\begin{rem*}
f58d590e8a08 cross-references for the small blobs lemma
Scott Morrison <scott@tqft.net>
parents: 385
diff changeset
   737
\label{rem:for-small-blobs}
f58d590e8a08 cross-references for the small blobs lemma
Scott Morrison <scott@tqft.net>
parents: 385
diff changeset
   738
For the proof of Lemma \ref{lem:CH-small-blobs} below we will need the following observation on the action constructed above.
368
eb7a1ea85179 aborted attempt at remark for small blobs lemma
Kevin Walker <kevin@canyon23.net>
parents: 359
diff changeset
   739
Let $b$ be a blob diagram and $p:P\times X\to X$ be a family of homeomorphisms.
eb7a1ea85179 aborted attempt at remark for small blobs lemma
Kevin Walker <kevin@canyon23.net>
parents: 359
diff changeset
   740
Then we may choose $e$ such that $e(p\ot b)$ is a sum of generators, each
385
b1da2a454ee7 refinement of ev map statement needed for small blobs
Kevin Walker <kevin@canyon23.net>
parents: 368
diff changeset
   741
of which has support close to $p(t,|b|)$ for some $t\in P$.
430
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   742
More precisely, the support of the generators is contained in the union of a small neighborhood
c5a35886cd82 small changes to evmap.tex
Scott Morrison <scott@tqft.net>
parents: 426
diff changeset
   743
of $p(t,|b|)$ with some small balls.
385
b1da2a454ee7 refinement of ev map statement needed for small blobs
Kevin Walker <kevin@canyon23.net>
parents: 368
diff changeset
   744
(Here ``small" is in terms of the metric on $X$ that we chose to construct $e$.)
396
f58d590e8a08 cross-references for the small blobs lemma
Scott Morrison <scott@tqft.net>
parents: 385
diff changeset
   745
\end{rem*}
385
b1da2a454ee7 refinement of ev map statement needed for small blobs
Kevin Walker <kevin@canyon23.net>
parents: 368
diff changeset
   746
b1da2a454ee7 refinement of ev map statement needed for small blobs
Kevin Walker <kevin@canyon23.net>
parents: 368
diff changeset
   747
437
93ce0ba3d2d7 revisions to \S 1-5
Scott Morrison <scott@tqft.net>
parents: 430
diff changeset
   748
\begin{thm}
93ce0ba3d2d7 revisions to \S 1-5
Scott Morrison <scott@tqft.net>
parents: 430
diff changeset
   749
\label{thm:CH-associativity}
357
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   750
The $CH_*(X, Y)$ actions defined above are associative.
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   751
That is, the following diagram commutes up to homotopy:
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   752
\[ \xymatrix{
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   753
& CH_*(Y, Z) \ot \bc_*(Y) \ar[dr]^{e_{YZ}} & \\
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   754
CH_*(X, Y) \ot CH_*(Y, Z) \ot \bc_*(X) \ar[ur]^{e_{XY}\ot\id} \ar[dr]_{\mu\ot\id} & & \bc_*(Z) \\
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   755
& CH_*(X, Z) \ot \bc_*(X) \ar[ur]_{e_{XZ}} &
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   756
} \]
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   757
Here $\mu:CH_*(X, Y) \ot CH_*(Y, Z)\to CH_*(X, Z)$ is the map induced by composition
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   758
of homeomorphisms.
437
93ce0ba3d2d7 revisions to \S 1-5
Scott Morrison <scott@tqft.net>
parents: 430
diff changeset
   759
\end{thm}
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   760
357
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   761
\begin{proof}
437
93ce0ba3d2d7 revisions to \S 1-5
Scott Morrison <scott@tqft.net>
parents: 430
diff changeset
   762
The strategy of the proof is similar to that of Theorem \ref{thm:CH}.
357
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   763
We will identify a subcomplex 
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   764
\[
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   765
	G_* \sub CH_*(X, Y) \ot CH_*(Y, Z) \ot \bc_*(X)
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   766
\]
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   767
where it is easy to see that the two sides of the diagram are homotopic, then 
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   768
show that there is a deformation retraction of $CH_*(X, Y) \ot CH_*(Y, Z) \ot \bc_*(X)$ into $G_*$.
70
kevin@6e1638ff-ae45-0410-89bd-df963105f760
parents:
diff changeset
   769
357
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   770
Let $p\ot q\ot b$ be a generator of $CH_*(X, Y) \ot CH_*(Y, Z) \ot \bc_*(X)$.
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   771
By definition, $p\ot q\ot b\in G_*$ if there is a disjoint union of balls in $X$ which
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   772
contains $|p| \cup p\inv(|q|) \cup |b|$.
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   773
(If $p:P\times X\to Y$, then $p\inv(|q|)$ means the union over all $x\in P$ of 
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   774
$p(x, \cdot)\inv(|q|)$.)
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   775
437
93ce0ba3d2d7 revisions to \S 1-5
Scott Morrison <scott@tqft.net>
parents: 430
diff changeset
   776
As in the proof of Theorem \ref{thm:CH}, we can construct a homotopy 
357
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   777
between the upper and lower maps restricted to $G_*$.
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   778
This uses the facts that the maps agree on $CH_0(X, Y) \ot CH_0(Y, Z) \ot \bc_*(X)$,
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   779
that they are compatible with gluing, and the contractibility of $\bc_*(X)$.
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   780
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   781
We can now apply Lemma \ref{extension_lemma_c}, using a series of increasingly fine covers, 
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   782
to construct a deformation retraction of $CH_*(X, Y) \ot CH_*(Y, Z) \ot \bc_*(X)$ into $G_*$.
bbd55b6e9650 associativity for CH_* action
Kevin Walker <kevin@canyon23.net>
parents: 345
diff changeset
   783
\end{proof}