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首页> 外文期刊>Japan journal of industrial and applied mathematics >A parallelizable energy-preserving integrator MB4 and its application to quantum-mechanical wavepacket dynamics
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A parallelizable energy-preserving integrator MB4 and its application to quantum-mechanical wavepacket dynamics

机译:一个平行化的节能集成器MB4及其在量子机械波斩波动态的应用

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摘要

In simulating physical systems, conservation of the total energy is often essential, especially when energy conversion between different forms of energy occurs frequently. Recently, a new fourth order energy-preserving integrator named MB4 was proposed based on the so-called continuous stage Runge-Kutta methods (Miyatake and Butcher in SIAM J Numer Anal 54(3):1993-2013, 2016). A salient feature of this method is that it is parallelizable, which makes its computational time for one time step comparable to that of second order methods. In this paper, we illustrate how to apply the MB4 method to a concrete ordinary differential equation using the nonlinear Schrodinger-type equation on a two-dimensional grid as an example. This system is a prototypical model of two-dimensional disordered organic material and is difficult to solve with standard methods like the classical Runge-Kutta methods due to the nonlinearity and the delta-function like potential coming from defects. Numerical tests show that the method can solve the equation stably and preserves the total energy to 16-digit accuracy throughout the simulation. It is also shown that parallelization of the method yields up to 2.8 times speedup using 3 computational nodes.
机译:在模拟物理系统时,总能量守恒通常是必不可少的,尤其是当不同形式的能量之间频繁发生能量转换时。最近,基于所谓的连续阶段龙格-库塔法(Miyatake and Butcher in SIAM J Numer Anal 54(3):1993-2013,2016),提出了一种新的四阶能量保持积分器MB4。该方法的一个显著特点是可并行化,这使得其一个时间步的计算时间与二阶方法相当。本文以二维网格上的非线性薛定谔型方程为例,说明了如何将MB4方法应用于具体的常微分方程。该系统是二维无序有机材料的典型模型,由于缺陷带来的非线性和类似δ函数的势,很难用经典龙格-库塔方法等标准方法求解。数值试验表明,该方法能稳定地求解方程,在整个模拟过程中,总能量保持在16位精度。研究还表明,使用3个计算节点,该方法的并行化速度可提高2.8倍。

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