Hamiltonian stability for weighted measure and generalized Lagrangian mean curvature flow
Abstract
In this paper, we generalize several results for the Hamiltonian stability and the mean curvature flow of Lagrangian submanifolds in a K\"ahler-Einstein manifold to more general K\"ahler manifolds including a Fano manifold equipped with a K\"ahler form by using the methodology proposed by T. Behrndt. Namely, we first consider a weighted measure on a Lagrangian submanifold in a K\"ahler manifold and investigate the variational problem of for the weighted volume functional. We call a stationary point of the weighted volume functional -minimal, and define the notion of Hamiltonian -stability as a local minimizer under Hamiltonian deformations. We show such examples naturally appear in a toric Fano manifold. Moreover, we consider the generalized Lagrangian mean curvature flow in a Fano manifold which is introduced by Behrndt and Smoczyk-Wang. We generalize the result of H. Li, and show that if the initial Lagrangian submanifold is a small Hamiltonian deformation of an -minimal and Hamiltonian -stable Lagrangian submanifold, then the generalized MCF converges exponentially fast to an -minimal Lagrangian submanifold.
Keywords
Cite
@article{arxiv.1710.05537,
title = {Hamiltonian stability for weighted measure and generalized Lagrangian mean curvature flow},
author = {Toru Kajigaya and Keita Kunikawa},
journal= {arXiv preprint arXiv:1710.05537},
year = {2018}
}
Comments
40 pages; (ver.3) minor corrections. (ver.2) Tex file format is changed, Corollary 2.5 and a reference are added, minor corrections