带电粒子束中库仑碰撞的自洽朗格万模拟

J. Qiang, R. Ryne, S. Habib
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引用次数: 10

摘要

在许多等离子体物理和变粒子束动力学问题中,库仑碰撞是用福克-普朗克方程来模拟的。为了结合这些碰撞,我们提出了一种三维并行朗格万模拟方法,该方法采用了在高性能并行计算机上实现的粒子-细胞(PIC)方法。我们首次进行了一个完全自洽的模拟,其中摩擦系数和扩散系数是根据第一性原理计算的。我们在消息传递编程范例中使用二维域分解方法以及动态负载平衡。面向对象编程用于封装通信语法的细节,并增强可重用性和可扩展性。在SGI Origin 2000、IBM SP RS/6000和Cray T3E-900上的性能测试证明了良好的可扩展性。作为一个测试实例,我们证明了具有初始各向异性速度分布的光束的碰撞松弛到最终热平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Self-Consistent Langevin Simulation of Coulomb Collisions in Charged-Particle Beams
In many plasma physics and changed-particle beam dynamics problems, Coulomb collisions are modeled by a Fokker-Planck equation. In order to incorporate these collisions, we present a three-dimensional parallel Langevin simulation method using a Particle-In-Cell (PIC) approach implemented on high-performance parallel computers. We perform, for the first time, a fully self-consistent simulation, in which the friction and diffusion coefficients are computed from first principles. We employ a two-dimensional domain decomposition approach within a message passing programming paradigm along with dynamic load balancing. Object oriented programming is used to encapsulate details of the communication syntax as well as to enhance reusability and extensibility. Performance tests on the SGI Origin 2000, IBM SP RS/6000 and the Cray T3E-900 have demonstrated good scalability. As a test example, we demonstrate the collisional relaxation to a final thermal equilibrium of a beam with an initially anisotropic velocity distribution.
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