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Particle-in-cell Simulations of Firehose Instability Driven by Bi-Kappa Electrons

机译:Bi-Kappa电子驱动的Firehose不稳定性的粒细胞仿真

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We report the first results from particle-in-cell simulations of the fast-growing aperiodic electron firehose instability driven by the anisotropic bi-Kappa distributed electrons. Such electrons characterize space plasmas, e.g., solar wind and planetary magnetospheres. Predictions made by the linear theory for full wave-frequency and wavevector spectra of instabilities are confirmed by the simulations showing that only the aperiodic branch develops at oblique angles with respect to the magnetic field direction. Angles corresponding to the peak magnetic field fluctuating power spectrum increase with the increase in the anisotropy and with the decrease in the inverse powerlaw index κ. The instability saturation and later nonlinear evolutions are also dominated by the oblique fluctuations, which are enhanced by the suprathermals and trigger a faster relaxation of the anisotropic electrons. Diffusion in velocity space is stimulated by the growing fluctuations, which scatter the electrons, starting with the more energetic suprathermal populations, as appears already before the saturation. After saturation the fluctuating magnetic field power shows decay patterns in the wave-vector space and a shift toward lower angles of propagation.
机译:我们通过各向异性Bi-Kappa分布式电子驱动的快速增长的非周期性电子发泡不稳定性的粒子内模拟中的第一结果。这种电子表征了空间等离子体,例如太阳风和行星磁体。通过仿真确认了由稳定性的全波频率和波波光谱的线性理论进行的预测,示出了仅在磁场方向上仅在倾斜角度以倾斜角度发育。与峰值磁场波动功率谱的角度随着各向异性的增加而增加,并且随着逆Powerlaw指数κ的减少而增加。不稳定的饱和度和后来的非线性进化也是由倾斜波动的主导,这些倾斜波动由超时的增强,并引发更快地放松各向异性电子。由于在饱和之前,从散射电子的速度波动刺激速度空间中的扩散被施加的速度波动刺激。在饱和之后,波动磁场功率显示波矢量空间中的衰减模式和朝向更低的传播角度的转变。

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