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首页> 外文期刊>Journal of the Physical Society of Japan >Detrapping of energetic electrons from curved shock front
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Detrapping of energetic electrons from curved shock front

机译:高能电子从弯曲激波前沿的俘获

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摘要

The effect of the Curvature of a shock front on electron trapping is investigated by means of a two-dimensional. fully kinetic, relativistic. electromagnetic particle code. Electron trapping and acceleration are observed even in a cylindrical shock wave in an external magnetic field B-0. Furthermore, unlike that in the case of planar shock waves in a uniform B-0, a significant fraction of trapped electrons can escape from the wave maintaining their ultrarelativistic energies. Such detrapping is due to the curvature of the shock front, i.e., the angle between the wave normal and B-0 varies along the trajectory of a trapped particle. The detrapping in a planar shock wave in a nonuniform magnetic field is also shown with one-dimensional simulations.
机译:通过二维研究了冲击锋面的曲率对电子俘获的影响。完全动力学的,相对论的。电磁粒子代码。即使在外部磁场B-0中的圆柱形冲击波中也观察到电子的俘获和加速。此外,与均匀B-0中的平面冲击波不同的是,很大一部分被捕获的电子可以从波中逸出,并保持其超相对论能量。这种脱陷是由于激波锋面的曲率所致,即,波法线与B-0之间的夹角沿被捕获粒子的轨迹变化。一维模拟还显示了非均匀磁场中平面冲击波的去陷。

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