English

The singular Weinstein conjecture

Symplectic Geometry 2023-06-16 v3 Differential Geometry Dynamical Systems

Abstract

In this article, we investigate Reeb dynamics on bmb^m-contact manifolds, previously introduced in [MiO], which are contact away from a hypersurface ZZ but satisfy certain transversality conditions on ZZ. The study of these contact structures is motivated by that of contact manifolds with boundary. The search of periodic Reeb orbits on those manifolds thereby starts with a generalization of the well-known Weinstein conjecture. Contrary to the initial expectations, examples of compact bmb^m-contact manifolds without periodic Reeb orbits outside ZZ are provided. Furthermore, we prove that in dimension 33, there are always infinitely many periodic orbits on the critical set if it is compact. We prove that traps for the bmb^m-Reeb flow exist in any dimension. This investigation goes hand-in-hand with the Weinstein conjecture on non-compact manifolds having compact ends of convex type. In particular, we extend Hofer's arguments to open overtwisted contact manifolds that are R+\mathbb R^+-invariant in the open ends, obtaining as a corollary the existence of periodic bmb^m-Reeb orbits away from the critical set. The study of bmb^m-Reeb dynamics is motivated by well-known problems in fluid dynamics and celestial mechanics, where those geometric structures naturally appear. In particular, we prove that the dynamics on positive energy level-sets in the restricted planar circular three-body problem are described by the Reeb vector field of a b3b^3-contact form that admits an infinite number of periodic orbits at the critical set.

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Cite

@article{arxiv.2005.09568,
  title  = {The singular Weinstein conjecture},
  author = {Eva Miranda and Cédric Oms},
  journal= {arXiv preprint arXiv:2005.09568},
  year   = {2023}
}

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