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Boundary depth in Floer theory and its applications to Hamiltonian dynamics and coisotropic submanifolds

2009/03/31 by Michael Usher
Mathematics · #math.SG #msc:53D40

paper · pdf

published as Israel J. Math 184 (2011), 1-57 · 41 pages. v2: Minor edits. To appear in Israel J. Math

arxiv created 2009/12/13 · arxiv updated 2011/08/09

Abstract

We assign to each nondegenerate Hamiltonian on a closed symplectic manifold a Floer-theoretic quantity called its "boundary depth," and establish basic results about how the boundary depths of different Hamiltonians are related. As applications, we prove that certain Hamiltonian symplectomorphisms supported in displaceable subsets have infinitely many nontrivial geometrically distinct periodic points, and we also significantly expand the class of coisotropic submanifolds which are known to have positive displacement energy. For instance, any coisotropic submanifold of contact type (in the sense of Bolle) in any closed symplectic manifold has positive displacement energy, as does any stable coisotropic submanifold of a Stein manifold. We also show that any stable coisotropic submanifold admits a Riemannian metric that makes its characteristic foliation totally geodesic, and that this latter, weaker, condition is enough to imply positive displacement energy under certain topological hypotheses.

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