Derived sheaves in locally conformally symplectic geometry

Fuente: arXiv
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Autor principal: Currier, Adrien
Formato: Preprint
Publicado: 2026
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author Currier, Adrien
author_facet Currier, Adrien
contents In this paper, we use derived sheaves to study rigidity phenomena in the cotangent bundles of manifolds endowed with some locally conformally symplectic ($\frak{lcs}$) structure. Taking inspiration from the work of Guillermou, Kashiwara and Shapira, we define a quantization for ``$\frak{lcs}$'' Hamiltonian isotopies, as well as new quantities: the asymptotic Betti numbers of a sheaf. We then show that those quantities are ``well behaved'' with respect of said quantization and use this to give a sheaf-theoretical proof of the Chantraine-Murphy theorem. We also consider the quantization in light of the Tamarkin morphism and the displacement energy of sheaves. This allows us to derive a non-squeezing theorem for $\frak{lcs}$ geometry that is similar, although not identical, to the one recently proven by Bertelson, Chakravarthy, and Sandon. Indeed, the result shown in this paper is more in line with the contact non-squeezing theorem shown by Eliashberg, Kim and Polterovich in 2006.
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id arxiv_https___arxiv_org_abs_2605_18614
institution arXiv
publishDate 2026
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spellingShingle Derived sheaves in locally conformally symplectic geometry
Currier, Adrien
Symplectic Geometry
Algebraic Topology
In this paper, we use derived sheaves to study rigidity phenomena in the cotangent bundles of manifolds endowed with some locally conformally symplectic ($\frak{lcs}$) structure. Taking inspiration from the work of Guillermou, Kashiwara and Shapira, we define a quantization for ``$\frak{lcs}$'' Hamiltonian isotopies, as well as new quantities: the asymptotic Betti numbers of a sheaf. We then show that those quantities are ``well behaved'' with respect of said quantization and use this to give a sheaf-theoretical proof of the Chantraine-Murphy theorem. We also consider the quantization in light of the Tamarkin morphism and the displacement energy of sheaves. This allows us to derive a non-squeezing theorem for $\frak{lcs}$ geometry that is similar, although not identical, to the one recently proven by Bertelson, Chakravarthy, and Sandon. Indeed, the result shown in this paper is more in line with the contact non-squeezing theorem shown by Eliashberg, Kim and Polterovich in 2006.
title Derived sheaves in locally conformally symplectic geometry
topic Symplectic Geometry
Algebraic Topology
url https://arxiv.org/abs/2605.18614