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Fermi acceleration at fast shock in a solar flare and impulsive loop-top hard X-ray source

机译:太阳耀斑和脉冲环顶硬X射线源在快速冲击下的费米加速度

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摘要

We propose that non-thermal electrons are efficiently accelerated by first-order Fermi process at the fast shock, as a natural consequence of the new magnetohydrodynamic picture of the flaring region revealed with Yohkoh. An oblique fast shock is naturally formed below the reconnection site, and boosts the acceleration to significantly decrease the injection energy. The slow shocks attached to the reconnection X-point heat the plasma up to 10--20 MK, exceeding the injection energy. The combination of the oblique shock configuration and the pre-heating by the slow shock allows bulk electron acceleration from the thermal pool. The accelerated electrons are trapped between the two slow shocks due to the magnetic mirror downstream of the fast shock, thus explaining the impulsive loop-top hard X-ray source discovered with Yohkoh. Acceleration time scale is ~ 0.3--0.6 s, which is consistent with the time scale of impulsive bursts. When these electrons stream away from the region enclosed by the fast shock and the slow shocks, they are released toward the footpoints and may form the simultaneous double-source hard X-ray structure at the footpoints of the reconnected field lines.
机译:我们建议,用Yohkoh揭示的张开区域的新磁流体动力学图,自然结果是在快速激波中通过一阶费米过程有效地加速了非热电子。在重新连接部位的下方自然会形成倾斜的快速冲击,并会加速加速度,从而大大降低注入能量。重新连接到X点的缓慢震动将等离子体加热到高达10--20 MK,超过了注入能量。倾斜冲击配置和缓慢冲击的预热相结合,可以使电子从热池中加速。加速的电子由于在快速震动下游的磁镜而被困在两次缓慢震动之间,从而解释了由Yohkoh发现的脉冲环顶硬X射线源。加速时间刻度为〜0.3--0.6 s,与脉冲突发的时间刻度一致。当这些电子从快速震动和慢速震动所包围的区域流走时,它们会向着脚点释放,并可能在重新连接的场线的脚点处同时形成双源硬X射线结构。

著录项

  • 作者

    Tsuneta, S; Naito, T;

  • 作者单位
  • 年度 1998
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  • 原文格式 PDF
  • 正文语种 eng
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