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Study of Slow-Mode Shock Formation and Particle Acceleration in the Symmetric Magnetic Reconnection Based on Hybrid Simulations

机译:研究缓慢冲击形成和粒子在对称磁加速度基于混合模拟重新连接

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The structure of the magnetic reconnection region and the acceleration mechanism of particles as they traverse from upstream into the reconnection exhaust are explored using 2.5D hybrid simulations. The reconnection boundary was analyzed using the Rankine-Hugoniot conditions and the six specific conditions for slow-mode shocks. We observe that the reconnection boundary can be interpreted as a slow-mode shock from as close as ~9 λ_i(λ_i = ion inertial length) from the X-point. The detection of slow-mode shocks increases with the increasing distance from the X-point and with the increasing ion plasma beta. Additionally, it is observed that if the slow-mode shocks are analyzed by taking artificial satellite cuts at various angles, the detection percentage of slow-mode shocks can decrease to ~10% for very oblique crossings. The detection percentage of slow-mode shocks is the percentage of points out of the total points studied, where the slow-mode shocks were observed. At the point of incidence into the slow-mode shocks, cold particles get accelerated and they gain energy. However, as we move further from the X-point, a nonclassical picture of slow-mode shocks emerges, where accelerated particles are present in the downstream of the slow-mode shocks, but they are not accelerated in the immediate vicinity of the shock. This crescent-shaped beam population is first accelerated at the slowmode shock much closer to the X-point, and then it travels to the slow-mode shock downstream region further away from the X-point, gaining energy on the way by reflecting between the two slow-mode shocks.
机译:磁场重联的结构区域和粒子加速机制他们从上游到重新连接导线排气探索使用2.5 d混合模拟。分析了使用兰金雨贡纽条件和缓慢的六个具体条件冲击。可以解释为缓慢冲击接近~ 9λ_i(λ_i =离子惯性长度)x点。随距离增大而增大x点和增加离子等离子体β。此外,观察到,如果缓慢的冲击进行了分析通过人造卫星削减在不同角度,检测比例缓慢的冲击减少为非常斜交叉~ 10%。检测比例缓慢震荡的指出总点的百分比研究,缓慢的冲击观察到。缓慢的冲击,冷粒子被加速他们获得能量。从x点,一个模的照片缓慢的冲击中,加速粒子存在的下游缓慢的冲击,但他们没有加速附近的冲击。新月形的梁人口加速slowmode冲击更接近x点,然后缓慢的旅行冲击下游地区远离x点,获得的能量通过反射两者之间缓慢的冲击。

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