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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Macroscopic quasi-linear theory of electromagnetic electron cyclotron instability associated with core and halo solar wind electrons
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Macroscopic quasi-linear theory of electromagnetic electron cyclotron instability associated with core and halo solar wind electrons

机译:宏观的准线性电磁理论电子回旋不稳定有关核心和光环太阳风电子

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摘要

Spacecraft observations made near 1 AU show that both core and halo solar wind electrons exhibit temperature anisotropies that appear to be regulated by marginal electromagnetic electron cyclotron instability condition. In the literature, the threshold conditions of this instability, operative for T_⊥>T_(||), have been expressed as an inverse correlation between the temperature anisotropy, T_⊥∕T_(||), and parallel beta, β_(||), but such a relation was deduced on the basis of linear stability analysis combined with empirical fitting. The present paper, on the other hand, employs macroscopic quasi-linear analysis for core-halo two-component model of the solar wind electrons, in order to follow the self-consistent time history of the core and halo temperature development as well as the dynamics of magnetic field perturbation wave energy. In the present analysis, the inverse correlation for core and halo temperature anisotropy and parallel beta naturally emerges from the solutions of self-consistent theory. The present findings indicate that the macroscopic quasi-linear method may be useful for modeling the dynamics of solar wind electrons.
机译:飞船观察附近1 AU显示核心和光环太阳风电子展览似乎温度各向异性由边际电磁电子回旋加速器的不稳定状态。文学,它的阈值条件不稳定,手术对T_⊥识别> T_ (| |),表示为一个相关关系的温度各向异性、T_⊥识别∕T_(| |),和并行β,β_(| |),但这样的关系推导出结合线性稳定性分析的基础与经验拟合。另一方面,采用宏观的准线性分析核晕的双组分模型太阳风电子,以遵循有条理的时间历史的核心和光环温度以及动态发展磁场扰动波的能量。目前分析,负相关核心和光环温度各向异性和并行β自然出现的解决方案自洽理论。表明,宏观的准线性方法可能是用于建模的动态太阳能风电子。

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