English

Accuracy of spectral element method for wave, parabolic and Schr\"{o}dinger equations

Numerical Analysis 2021-08-31 v2 Numerical Analysis

Abstract

The spectral element method constructed by the QkQ^k (k2k\geq 2) continuous finite element method with (k+1)(k+1)-point Gauss-Lobatto quadrature on rectangular meshes is a popular high order scheme for solving wave equations in various applications. It can also be regarded as a finite difference scheme on all Gauss-Lobatto points. We prove that this finite difference scheme is (k+2)(k+2)-order accurate in discrete 2-norm for smooth solutions. The same proof can be extended to the spectral element method solving linear parabolic and Schr\"odinger equations. The main result also applies to the spectral element method on curvilinear meshes that can be smoothly mapped to rectangular meshes on the unit square.

Keywords

Cite

@article{arxiv.2103.00400,
  title  = {Accuracy of spectral element method for wave, parabolic and Schr\"{o}dinger equations},
  author = {Hao Li and Daniel Appelö and Xiangxiong Zhang},
  journal= {arXiv preprint arXiv:2103.00400},
  year   = {2021}
}