粒子-单元加速器代码-框架扭曲的新方法

J. Vay, D. Grote, R. Cohen, A. Friedman
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引用次数: 111

摘要

重离子聚变科学虚拟国家实验室(hfs - vnl)正在开发粒子单元(PIC)代码框架曲速,以指导加速器的开发,该加速器可以提供适合高能密度实验和惯性聚变胶囊内爆的光束。它还应用于重离子聚变项目以外的各个领域,用于研究和设计现有和下一代高能加速器,例如,包括电子云效应和激光尾流场加速的研究。本文概述了Warp的功能,总结了最近由hfs - vnl开发的原始数值方法(包括具有自适应网格细化的PIC,大时间步长漂移-洛伦兹?任意磁化物种的移动器,相对论洛伦兹不变跳跃粒子推进器,洛伦兹增强帧中的模拟,具有可调数值色散和高效基于跨步的数字滤波的电磁求解器),特别强调了网格细化能力的描述。本文给出了这些方法在上述领域的应用实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel methods in the Particle-In-Cell accelerator Code-Framework Warp
The Particle-In-Cell (PIC) Code-Framework Warp is being developed by the Heavy Ion Fusion Science Virtual National Laboratory (HIFS-VNL) to guide the development of accelerators that can deliver beams suitable for high-energy density experiments and implosion of inertial fusion capsules. It is also applied in various areas outside the Heavy Ion Fusion program to the study and design of existing and next-generation high-energy accelerators, including the study of electron cloud effects and laser wakefield acceleration for example. This paper presents an overview of Warp's capabilities, summarizing recent original numerical methods that were developed by the HIFS-VNL (including PIC with adaptive mesh refinement, a large-timestep ?drift-Lorentz? mover for arbitrarily magnetized species, a relativistic Lorentz invariant leapfrog particle pusher, simulations in Lorentz-boosted frames, an electromagnetic solver with tunable numerical dispersion and efficient stride-based digital filtering), with special emphasis on the description of the mesh refinement capability. Selected examples of the applications of the methods to the abovementioned fields are given.
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