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PIC simulations of the thermal anisotropy-driven Weibel instability: field growth and phase space evolution upon saturation

机译:热各向异性驱动的Weibel不稳定性的PIC模拟:饱和时的场增长和相空间演化

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The Weibel instability is investigated with PIC simulations of an initially unmagnetized and spatially uniform electron plasma. This instability, which is driven by the thermally anisotropic electron distribution, generates electromagnetic waves with wave vectors perpendicular to the direction of the higher temperature. Two simulations are performed: a 2D simulation, with a simulation plane that includes the direction of higher temperature, demonstrates that the wave spectrum is initially confined to one dimension. The electric field components in the simulation plane generated by the instability equalize at the end of the simulation through a secondary instability. A1D PIC simulation with a high resolution, where the simulation box is aligned with the wave vectors of the growing waves, reveals details of the electron phase space distribution and permits a comparison of the magnetic and electric fields when the instability saturates. It is shown that the electrostatic field is driven by the magnetic pressure gradient and that it and the magnetic field redistribute the electrons in space.
机译:用初始未磁化且空间均匀的电子等离子体的PIC模拟研究了Weibel不稳定性。由热各向异性电子分布驱动的这种不稳定性会产生电磁波,其波矢量垂直于较高温度的方向。进行了两个模拟:二维模拟,其中的模拟平面包括较高的温度方向,表明波谱最初局限于一维。在仿真结束时,通过二次不稳定性,由不稳定性产生的仿真平面中的电场分量将相等。具有高分辨率的A1D PIC模拟,其中模拟框与生长波的波向量对齐,揭示了电子相空间分布的详细信息,并且当不稳定性饱和时可以比较磁场和电场。结果表明,静电场是由磁压力梯度驱动的,并且它和磁场会在空间中重新分配电子。

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