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Electromagnetic Ion–Ion Instabilities in Space Plasmas: Effects of Suprathermal Populations

机译:空间等离子体中电磁离子离子稳定性:上班人群的影响

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In collision-poor plasmas from space, three distinct ion–ion instabilities can be driven by the proton beams streaming along the background magnetic field: left-hand resonant, nonresonant, and right-hand resonant instabilities. These instabilities are in general investigated considering only idealized proton beams with Maxwellian velocity distributions, and ignoring the implications of suprathermal populations, usually reproduced by the Kappa power laws. Moreover, the existing theories minimize the kinetic effects of electrons, assuming them isotropic and Maxwellian distributed. In an attempt to overcome these limitations, in the present paper we present the results of an extended investigation of ion–ion instabilities, which show that their dispersion and stability properties (e.g., growth rates, wave frequencies, and the unstable wavenumbers) are highly sensitive to the influence of suprathermal populations and anisotropic electrons. These results offer valuable explanations for the origin of the enhanced low-frequency fluctuations, frequently observed in space plasmas and associated with proton beams.
机译:在从空间的碰撞差的等离子体中,三个不同的离子离子不稳定性可以通过沿背景磁场流的质子束驱动:左手谐振,非谐振和右手谐振不稳定性。这些不稳定性通常考虑仅考虑具有最大值速度分布的理想化质子梁,并且忽略了κ动力规律的超级群体的影响。此外,现有的理论最小化了电子的动力学效应,假设它们是各向同性和最大威尔的分布。在尝试克服这些限制中,在本文中,我们介绍了对离子离子不稳定性的延长研究的结果,这表明它们的分散和稳定性(例如,生长速率,波浪频率和不稳定的波数)很高度对上产阶级群体和各向异性电子的影响敏感。这些结果为增强的低频波动的起源提供了有价值的解释,经常在空间等离子体中观察到和与质子束相关联。

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