Connecting Orbits in Cooperative McKean-Vlasov SDEs

Fuente: arXiv
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Autores principales: Liu, Chunlin, Qu, Baoyou, Yao, Jinxiang, Zhi, Yanpeng
Formato: Preprint
Publicado: 2024
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author Liu, Chunlin
Qu, Baoyou
Yao, Jinxiang
Zhi, Yanpeng
author_facet Liu, Chunlin
Qu, Baoyou
Yao, Jinxiang
Zhi, Yanpeng
contents In this work we extend the framework of monotone dynamical systems to a broad and important class of stochastic equations, namely cooperative McKean-Vlasov SDEs with multiplicative noise. Under a locally dissipative assumption, our main theorem establishes the existence of multiple order-related invariant measures in the the Wasserstein space together with monotone connecting orbits (heteroclinic orbits) between them, with respect to the stochastic order. The presence of such connecting orbits also reveals the unstable nature of those invariant measures appearing as their backward limits, a dynamical feature that has remained largely unexplored in stochastic equations. The framework applies to a wide range of classical models, including granular media equations in double-well and multi-well confining potentials with quadratic interaction, perturbed double-well landscapes, and interacting multi-species population models. Our method is based on building a monotone dynamical system that preserves the stochastic order, achieved through a cone compatible with this order and an extension of the classical Dancer-Hess connecting orbit theorem.
format Preprint
id arxiv_https___arxiv_org_abs_2407_18853
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Connecting Orbits in Cooperative McKean-Vlasov SDEs
Liu, Chunlin
Qu, Baoyou
Yao, Jinxiang
Zhi, Yanpeng
Probability
Dynamical Systems
Primary 37C65, 60E15, secondary 60H10, 60B10
In this work we extend the framework of monotone dynamical systems to a broad and important class of stochastic equations, namely cooperative McKean-Vlasov SDEs with multiplicative noise. Under a locally dissipative assumption, our main theorem establishes the existence of multiple order-related invariant measures in the the Wasserstein space together with monotone connecting orbits (heteroclinic orbits) between them, with respect to the stochastic order. The presence of such connecting orbits also reveals the unstable nature of those invariant measures appearing as their backward limits, a dynamical feature that has remained largely unexplored in stochastic equations. The framework applies to a wide range of classical models, including granular media equations in double-well and multi-well confining potentials with quadratic interaction, perturbed double-well landscapes, and interacting multi-species population models. Our method is based on building a monotone dynamical system that preserves the stochastic order, achieved through a cone compatible with this order and an extension of the classical Dancer-Hess connecting orbit theorem.
title Connecting Orbits in Cooperative McKean-Vlasov SDEs
topic Probability
Dynamical Systems
Primary 37C65, 60E15, secondary 60H10, 60B10
url https://arxiv.org/abs/2407.18853