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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Parallel implementation of a relativistic semi-Lagrangian Vlasov-Maxwell solver
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Parallel implementation of a relativistic semi-Lagrangian Vlasov-Maxwell solver

机译:相对论半拉格朗日vlasov-maxwell求解器的并行实现

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We describe the parallel implementation of a semi-Lagrangian relativistic VLasov ElectroMagnetic (VLEM) code for the numerical investigation of the dynamics of charged particle distribution in their self-consistent electromagnetic fields. This paper introduces the numerical solution of the Vlasov-Maxwell system in two spatial dimensions, and two or three momentum dimensions. Accuracy, stability, efficiency properties and the implementation of a new algorithm of charge conservation when solving Maxwell equations are discussed. The performances of the code are tested by studying the evolution of Weibel-type instabilities in the relativistic regime. Application to the coupling between Current Filamentation (CFI) and Two-Stream (TSI) instabilities is presented showing the importance of pair-wise vortex merging scenario in the saturation mechanism.
机译:我们描述了半拉格朗日相对论Vlasov电磁(VLEM)代码的并行实现,用于其自一致电磁场中带电粒子分布动态的数值研究。 本文介绍了vlasov-maxwell系统的两个空间尺寸和两三个动量尺寸的数值解。 讨论了求解麦克斯韦方程时的精度,稳定性,效率性能和新电荷节约算法的实现。 通过研究相对论制度的Weibel型不稳定性的演变来测试代码的性能。 介绍了在电流丝(CFI)和两流(TSI)稳定性之间的耦合的应用,示出了在饱和机制中的配对涡流合并方案的重要性。

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