On Symmetry Breaking of Allen-Cahn

IF 1.2 Q2 MATHEMATICS, APPLIED CSIAM Transactions on Applied Mathematics Pub Date : 2021-06-12 DOI:10.4208/csiam-am.so-2021-0030
Dong Li, Chaoyu Quan, T. Tang, Wen Yang
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引用次数: 1

Abstract

We consider numerical solutions for the Allen-Cahn equation with standard double well potential and periodic boundary conditions. Surprisingly it is found that using standard numerical discretizations with high precision computational solutions may converge to completely incorrect steady states. This happens for very smooth initial data and state-of-the-art algorithms. We analyze this phenomenon and showcase the resolution of this problem by a new symmetry-preserving filter technique. We develop a new theoretical framework and rigorously prove the convergence to steady states for the filtered solutions.
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关于Allen-Cahn的对称性破缺
我们考虑具有标准双阱势和周期边界条件的Allen-Cahn方程的数值解。令人惊讶的是,发现使用具有高精度计算解的标准数值离散可能会收敛到完全不正确的稳态。这种情况发生在非常平滑的初始数据和最先进的算法上。我们分析了这一现象,并展示了通过一种新的对称性保持滤波器技术来解决这一问题。我们建立了一个新的理论框架,并严格证明了滤波解的稳态收敛性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.70
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