Stochastic multisymplectic PDEs and their structure-preserving numerical methods

Fuente: arXiv
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Main Authors: Hu, Ruiao, Peng, Linyu
Format: Preprint
Published: 2025
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author Hu, Ruiao
Peng, Linyu
author_facet Hu, Ruiao
Peng, Linyu
contents We construct stochastic multisymplectic systems by considering a stochastic extension to the variational formulation of multisymplectic partial differential equations proposed in [Hydon, {\it Proc. R. Soc. A}, 461, 1627--1637, 2005]. The stochastic variational principle implies the existence of stochastic $1$-form and $2$-form conservation laws, as well as conservation laws arising from continuous variational symmetries via a stochastic Noether's theorem. These results are the stochastic analogues of those found in deterministic variational principles. Furthermore, we develop stochastic structure-preserving collocation methods for this class of stochastic multisymplectic systems. These integrators possess a discrete analogue of the stochastic $2$-form conservation law and, in the case of linear systems, also guarantee discrete momentum conservation. The effectiveness of the proposed methods is demonstrated through their application to stochastic nonlinear Schrödinger equations featuring either stochastic transport or stochastic dispersion.
format Preprint
id arxiv_https___arxiv_org_abs_2501_16913
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Stochastic multisymplectic PDEs and their structure-preserving numerical methods
Hu, Ruiao
Peng, Linyu
Dynamical Systems
Numerical Analysis
Mathematical Physics
We construct stochastic multisymplectic systems by considering a stochastic extension to the variational formulation of multisymplectic partial differential equations proposed in [Hydon, {\it Proc. R. Soc. A}, 461, 1627--1637, 2005]. The stochastic variational principle implies the existence of stochastic $1$-form and $2$-form conservation laws, as well as conservation laws arising from continuous variational symmetries via a stochastic Noether's theorem. These results are the stochastic analogues of those found in deterministic variational principles. Furthermore, we develop stochastic structure-preserving collocation methods for this class of stochastic multisymplectic systems. These integrators possess a discrete analogue of the stochastic $2$-form conservation law and, in the case of linear systems, also guarantee discrete momentum conservation. The effectiveness of the proposed methods is demonstrated through their application to stochastic nonlinear Schrödinger equations featuring either stochastic transport or stochastic dispersion.
title Stochastic multisymplectic PDEs and their structure-preserving numerical methods
topic Dynamical Systems
Numerical Analysis
Mathematical Physics
url https://arxiv.org/abs/2501.16913