时变Kohn-Sham方程的隐式求解器

IF 1.9 4区 数学 Q1 MATHEMATICS
Lei Yang
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引用次数: 1

摘要

. 隐式数值方法在求解时变Kohn-Sham方程时,具有保留量子系统物理性质的优点。然而,效率问题阻碍了这些隐式方法的实际应用。本文基于一类龙格-库塔法和有限元法,提出了时变Kohn-Sham方程的隐式求解器。通过三种方法部分解决了效率问题,即提出了h -自适应网格法来有效地约束离散化问题的大小,开发了复值代数多网格求解器来有效地求解隐式离散化衍生的线性系统,以及基于OpenMP的算法并行化。大量的数值实验证明了该数值方法的收敛性、保持物理性质的能力和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Implicit Solver for the Time-Dependent Kohn-Sham Equation
. The implicit numerical methods have the advantages on preserving the physical properties of the quantum system when solving the time-dependent Kohn-Sham equation. However, the efficiency issue prevents the practical applications of those implicit methods. In this paper, an implicit solver based on a class of Runge-Kutta methods and the finite element method is proposed for the time-dependent Kohn-Sham equation. The efficiency issue is partially resolved by three approaches, i.e., an h -adaptive mesh method is proposed to effectively restrain the size of the discretized problem, a complex-valued algebraic multigrid solver is developed for efficiently solving the derived linear system from the implicit discretization, as well as the OpenMP based parallelization of the algorithm. The numerical convergence, the ability on preserving the physical properties, and the efficiency of the proposed numerical method are demonstrated by a number of numerical experiments.
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来源期刊
CiteScore
2.80
自引率
7.70%
发文量
33
审稿时长
>12 weeks
期刊介绍: Numerical Mathematics: Theory, Methods and Applications (NM-TMA) publishes high-quality original research papers on the construction, analysis and application of numerical methods for solving scientific and engineering problems. Important research and expository papers devoted to the numerical solution of mathematical equations arising in all areas of science and technology are expected. The journal originates from the journal Numerical Mathematics: A Journal of Chinese Universities (English Edition). NM-TMA is a refereed international journal sponsored by Nanjing University and the Ministry of Education of China. As an international journal, NM-TMA is published in a timely fashion in printed and electronic forms.
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