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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Kinetic particle-in-cell simulations of asymmetric quasi-parallel mildly relativistic plasma collisions: Field and electron dynamics
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Kinetic particle-in-cell simulations of asymmetric quasi-parallel mildly relativistic plasma collisions: Field and electron dynamics

机译:不对称准平行轻相对论等离子体碰撞的运动粒子模拟:场和电子动力学

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摘要

A gamma-ray burst (GRB) is triggered by a stellar implosion and the subsequent ejection of an ultrarelativistic jet. The prompt emissions are attributed to mildly relativistic collisions of plasma clouds within this jet. The resulting internal shocks are instrumental in the generation of the magnetic fields and the energetic electrons, which excite the observed electromagnetic emissions. We use particle-in-cell (PIC) simulations to examine such a shock. The colliding hot magnetized plasma clouds have densities that differ by a factor of 10. Current channels form rapidly in the 3D simulation, which resemble those in a HammerRostoker equilibrium, are observed also in the 2D simulation. The 2D simulation also shows the formation of a shock, which is mediated by a strong electromagnetic wave, and the energy equipartition between electrons and ions.
机译:恒星内爆和随后的超相对论射流喷射触发了伽马射线爆发(GRB)。迅速的排放归因于这架射流中等离子云的轻微相对论碰撞。产生的内部冲击有助于磁场和高能电子的产生,这些磁场和高能电子激发观察到的电磁辐射。我们使用单元中粒子(PIC)模拟来检查这种冲击。碰撞的热磁化等离子体云的密度相差10倍。在3D模拟中快速形成电流通道,类似于HammerRostoker平衡中的通道,在2D模拟中也可以观察到。二维模拟还显示了由强电磁波介导的激波的形成,以及电子和离子之间的能量均分。

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