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The Acceleration of Electrons at a Spherical Coronal Shock in a Streamer-like Coronal Field

机译:在飘带状冠状场中的球形冠状休克中的电子加速

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We study the effect of large-scale coronal magnetic field on the electron acceleration at a spherical coronal shock using a test-particle method. The coronal field is approximated by an analytical solution with a streamer-like magnetic field featured by partially open magnetic field and a current sheet at the equator atop the closed region. It shows that the closed field plays the role of a trapping agency of shock-accelerated electrons, allowing for repetitive reflection and acceleration, therefore can greatly enhance the shock-electron acceleration efficiency. It is found that, with an ad hoc pitch-angle scattering, electron injected in the open field at the shock flank can be accelerated to high energies as well. In addition, if the shock is faster or stronger, a relatively harder electron energy spectrum and a larger maximum energy can be achieved.
机译:使用试验颗粒方法研究大规模冠状磁场对球形冠状冲击的电子加速度的影响。冠状场由分析液近似,具有由部分打开磁场的飘带状磁场和闭合区域上的赤道上的当前纸张特征。结果表明,封闭的场地起到冲击加速电子的捕获机构的作用,允许重复反射和加速度,因此可以大大提高冲击电子加速度效率。结果发现,利用ad hoc俯仰角散射,在冲击侧面处的开放场中注入的电子也可以加速到高能量。另外,如果冲击更快或更强,则可以实现相对较硬的电子能谱和更大的最大能量。

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