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Linking and the Morse complex
- Publication Year :
- 2012
-
Abstract
- For a Morse function f on a compact oriented manifold M, we show that f has more critical points than the number required by the Morse inequalities if and only if there exists a certain class of link in M whose components have nontrivial linking number, such that the minimal value of f on one of the components is larger than its maximal value on the other. Indeed we characterize the precise number of critical points of f in terms of the Betti numbers of M and the behavior of f with respect to links. This can be viewed as a refinement, in the case of compact manifolds, of the Rabinowitz Saddle Point Theorem. Our approach, inspired in part by techniques of chain-level symplectic Floer theory, involves associating to collections of chains in M algebraic operations on the Morse complex of f, which yields relationships between the linking numbers of homologically trivial (pseudo)cycles in M and an algebraic linking pairing on the Morse complex.<br />46 pages; some of the length is due to the inclusion of details of somewhat-standard arguments in the hopes of making the paper more broadly accessible. Preliminary version, comments very welcome
- Subjects :
- Mathematics - Differential Geometry
Betti number
010102 general mathematics
Discrete Morse theory
Geometric Topology (math.GT)
Linking number
General Medicine
Morse–Smale system
01 natural sciences
58E05
Combinatorics
symbols.namesake
Mathematics - Geometric Topology
Morse homology
Differential Geometry (math.DG)
0103 physical sciences
FOS: Mathematics
symbols
010307 mathematical physics
0101 mathematics
Cerf theory
Mathematics::Symplectic Geometry
Circle-valued Morse theory
Morse theory
Mathematics
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....582aae1f098b1c735532da9cf3e5a7ca