English

Higher order time discretization method for a class of semilinear stochastic partial differential equations with multiplicative noise

Numerical Analysis 2023-07-10 v2 Numerical Analysis

Abstract

In this paper, we consider a new approach for semi-discretization in time and spatial discretization of a class of semi-linear stochastic partial differential equations (SPDEs) with multiplicative noise. The drift term of the SPDEs is only assumed to satisfy a one-sided Lipschitz condition and the diffusion term is assumed to be globally Lipschitz continuous. Our new strategy for time discretization is based on the Milstein method from stochastic differential equations. We use the energy method for its error analysis and show a strong convergence order of nearly 11 for the approximate solution. The proof is based on new H\"older continuity estimates of the SPDE solution and the nonlinear term. For the general polynomial-type drift term, there are difficulties in deriving even the stability of the numerical solutions. We propose an interpolation-based finite element method for spatial discretization to overcome the difficulties. Then we obtain H1H^1 stability, higher moment H1H^1 stability, L2L^2 stability, and higher moment L2L^2 stability results using numerical and stochastic techniques. The nearly optimal convergence orders in time and space are hence obtained by coupling all previous results. Numerical experiments are presented to implement the proposed numerical scheme and to validate the theoretical results.

Keywords

Cite

@article{arxiv.2303.13766,
  title  = {Higher order time discretization method for a class of semilinear stochastic partial differential equations with multiplicative noise},
  author = {Yukun Li and Liet Vo and Guanqian Wang},
  journal= {arXiv preprint arXiv:2303.13766},
  year   = {2023}
}

Comments

28 pages, 8 figures. arXiv admin note: text overlap with arXiv:1811.05028