Non-asymptotic Error Analysis of Explicit Modified Euler Methods for Superlinear and Non-contractive SODEs
Numerical Analysis
2025-09-11 v1 Numerical Analysis
Abstract
A family of explicit modified Euler methods (MEMs) is constructed for long-time approximations of super-linear SODEs driven by multiplicative noise. The proposed schemes can preserve the same Lyapunov structure as the continuous problems. Under a non-contractive condition, we establish a non-asymptotic error bound between the law of the numerical approximation and the target distribution in Wasserstein-1 () distance through a time-independent weak convergence rate for the proposed schemes. As a by-product of this weak error estimate, we obtain an convergence rate between the exact and numerical invariant measures.
Cite
@article{arxiv.2509.08410,
title = {Non-asymptotic Error Analysis of Explicit Modified Euler Methods for Superlinear and Non-contractive SODEs},
author = {Zhihui Liu and Xiaojie Wang and Xiaoming Wu and Xiaoyan Zhang},
journal= {arXiv preprint arXiv:2509.08410},
year = {2025}
}
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26 pages, 0 figue