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首页> 外文期刊>The Astrophysical journal >ELECTRON ACCELERATION AT A CORONAL SHOCK PROPAGATING THROUGH A LARGE-SCALE STREAMER-LIKE MAGNETIC FIELD
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ELECTRON ACCELERATION AT A CORONAL SHOCK PROPAGATING THROUGH A LARGE-SCALE STREAMER-LIKE MAGNETIC FIELD

机译:通过大型流形像磁场在冠状冲击中的电子加速

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Using a test-particle simulation, we investigate the effect of large-scale coronal magnetic fields on electron acceleration at an outward-propagating coronal shock with a circular front. The coronal field is approximated by an analytical solution with a streamer-like magnetic field featuring a partially open magnetic field and a current sheet at the equator atop the closed region. We show that the large-scale shock-field configuration, especially the relative curvature of the shock and the magnetic field line across which the shock is sweeping, plays an important role in the efficiency of electron acceleration. At low shock altitudes, when the shock curvature is larger than that of the magnetic field lines, the electrons are mainly accelerated at the shock flanks; at higher altitudes, when the shock curvature is smaller, the electrons are mainly accelerated at the shock nose around the top of closed field lines. The above process reveals the shift of the efficient electron acceleration region along the shock front during its propagation. We also find that, in general, the electron acceleration at the shock flank is not as efficient as that at the top of the closed field because a collapsing magnetic trap can be formed at the top. In addition, we find that the energy spectra of electrons are power-law-like, first hardening then softening with the spectral index varying in a range of ?3 to ?6. Physical interpretations of the results and implications for the study of solar radio bursts are discussed.
机译:使用测试粒子模拟,我们研究了具有圆形前向的向外传播的日冕电击中大日冕磁场对电子加速度的影响。冠状磁场可以通过分析溶液来近似,该溶液具有类似流光的磁场,该磁场具有部分开放的磁场,并且在封闭区域顶部的赤道处具有电流表。我们表明,大规模的冲击场结构,尤其是冲击的相对曲率和扫过的磁场线,在电子加速效率中起着重要的作用。在低冲击高度下,当冲击曲率大于磁场线的曲率时,电子主要在冲击侧面被加速;而在较高的高度上,当激波曲率较小时,电子主要在闭合场线顶部附近的激波鼻处加速。上述过程揭示了有效电子加速区域在激波传播过程中沿着激波前沿的移动。我们还发现,通常,在冲击面的电子加速度不如在封闭场的顶部有效,因为可以在顶部形成塌陷的磁阱。另外,我们发现电子的能谱类似于幂律,首先变硬然后变软,其光谱指数在?3至?6范围内变化。讨论了结果的物理解释以及对太阳无线电脉冲串研究的意义。

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