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Dynamics of electron beams in the inhomogeneous solar corona plasma

机译:非均匀太阳电晕等离子体中电子束的动力学

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摘要

Dynamics of a spatially-limited electron beam in the inhomogeneous solar corona plasma is considered in the framework of weak turbulence theory when the temperature of the beam significantly exceeds that of surrounding plasma. The numerical solution of kinetic equations manifests that generally the beam accompanied by Langmuir waves propagates as a beam-plasma structure with a decreasing velocity. Unlike the uniform plasma case the structure propagates with the energy losses in the form of Langmuir waves. The results obtained are compared with the results of observations of type III bursts. It is shown that the deceleration of type III sources can be explained by corona inhomogeneity. The frequency drift rates of the type III sources are found to be in good agreement with the numerical results of beam dynamics.
机译:当电子束的温度明显超过周围等离子体的温度时,在弱湍流理论的框架内考虑了不均匀的太阳电晕等离子体中受空间限制的电子束的动力学。动力学方程的数值解表明,通常伴随朗格缪尔波的光束以束状等离子体结构传播,并且速度降低。与均匀等离子体情况不同,该结构以能量损耗的形式以朗缪尔波的形式传播。将获得的结果与III型爆发的观察结果进行比较。结果表明,III型离子源的减速可以用电晕不均匀性来解释。发现III型源的频率漂移率与光束动力学的数值结果非常吻合。

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  • 来源
    《Solar Physics》 |2001年第1期|131-149|共19页
  • 作者

    Eduard P. Kontar;

  • 作者单位

    Institute of Theoretical Astrophysics;

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  • 正文语种 eng
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