English

Geometry of Liouville sectors and the maximum principle

Symplectic Geometry 2023-08-31 v4

Abstract

We introduce a new package of Floer data of λ\lambda-sectorial almost complex structures JJ and sectorial Hamiltonians HH on the Liouville sectors introduced by Ganatra-Pardon-Shende the pairs of which are amenable to the maximum principle for the analysis of pseudoholomorphic curves relevant to the studies of wrapped Fukaya categories and of symplectic cohomology. It is also amenable to the strong maximum principle in addition when paired with cylindrical Lagrangian boundary conditions. The present work answers to a question raised by Ganatra-Pardon-Shende concerning a characterization of almost complex structures and Hamiltonians in that all the relevant confinement results in the studies of wrapped Fukaya category, symplectic cohomology and closed-open (and open-closed) maps between them can be uniformly established via the maximum principle through tensorial calculations, Hamiltonian calculus and sign considerations without making any estimates. Along the way, we prove the existence of a pseudoconvex pair (ψ,J)(\psi,J) such that \emph{JJ is dλd\lambda-tame and ψ\psi is an exhaustion function of nbhd(MM)\operatorname{nbhd}(\partial_\infty M \cup \partial M) that also satisfies the equation dψJ=λ-d\psi \circ J = \lambda thereon for any Liouville sector with corners (M,λ)(M,\lambda)}.

Keywords

Cite

@article{arxiv.2111.06112,
  title  = {Geometry of Liouville sectors and the maximum principle},
  author = {Yong-Geun Oh},
  journal= {arXiv preprint arXiv:2111.06112},
  year   = {2023}
}

Comments

v3) 81 pages, 4 figures, exposition of Part 1 much improved, the proof of old Proposition 6.3 (now Proposition 9.1) rewritten by correcting mistakes and its statement improved, Part 2 largely rewritten by correcting mistakes and improving its exposition, two more appendices added; v4) a typo in Proposition 3.7 (5) corrected, typos and errors in the proof of Proposition 3.7 in Appendix C corrected