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Electron streams formation and secondary two stream instability onset in the post-saturation regime of the classical Weibel instability

机译:经典韦贝尔不饱和度的后饱和状态下电子流的形成和二次两流的不稳定性开始

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摘要

The electrostatic activity in the post-saturation regime of the velocity anisotropy driven Weibel instability is investigated by means of 1D 3V particle in cell simulations. Two different initial simulation configurations have been chosen to characterize the electrostatic activity in the post-saturation stage. A secondary two stream instability arises in both cases. However, significant differences occur in the thickness of the electron streams, in their initial locations, and in their effects on the bulk electron phase space distribution. An Hamiltonian description of particle motion in a 1D setting explains these differences in terms of the effective potential experienced by particles as a function of their initial perpendicular velocity. The different roles of the longitudinal electric field and the Lorentz force in the formation of electron streams are discussed.
机译:通过一维3V粒子在单元模拟中研究了速度各向异性驱动的Weibel不稳定性的饱和后状态下的静电活性。选择了两种不同的初始模拟配置来表征后饱和阶段的静电活动。在这两种情况下,都会产生次级两个流的不稳定性。但是,在电子流的厚度,其初始位置以及它们对体电子相空间分布的影响方面会出现明显差异。一维设置中粒子运动的汉密尔顿描述描述了这些差异,这些差异取决于粒子所经历的有效电势作为其初始垂直速度的函数。讨论了纵向电场和洛伦兹力在电子流形成中的不同作用。

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