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THE FORMATION OF A RELATIVISTIC PARTIALLY ELECTROMAGNETIC PLANAR PLASMA SHOCK

机译:相对论的部分电磁平面等离子体激波的形成

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摘要

Relativistically colliding plasma is modeled by particle-in-cell simulations in one and two spatial dimensions, with an ion-to-electron mass ratio of 400 and a temperature of 100 keV. The energy of an initial quasi-parallel magnetic field is 1% of the plasma kinetic energy. Energy dissipation by a growing wave pulse of mixed polarity, probably an oblique whistler wave, and different densities of the colliding plasma slabs result in the formation of an energetic electromagnetic structure within milliseconds. The structure, which develops for an initial collision speed of 0.9c, accelerates electrons to Lorentz factors of several hundred. A downstream region forms, separating the forward and reverse shocks. In this region, the plasma approaches an energy equipartition between electrons, ions, and the magnetic field. The electron energy spectrum N(E) resembles a power law at high energies, with an exponent close to -2.7, or N(E) ∝ E~(-2.7). The magnetic field reflects upstream ions, which form a beam and drag the electrons along to preserve the plasma quasineutrality. The forward and reverse shocks are asymmetric due to the unequal slab densities. The forward shock may be representative for the internal shocks of gamma-ray bursts.
机译:相对论碰撞等离子体是通过一维和二维空间中的粒子内模拟来建模的,离子与电子的质量比为400,温度为100 keV。初始准平行磁场的能量为等离子动能的1%。混合极性不断增加的波动脉冲(可能是倾斜的惠斯勒波)以及碰撞等离子体平板的不同密度导致的能量耗散会导致在毫秒内形成高能电磁结构。这种结构的初始碰撞速度为0.9c,可将电子加速至数百的洛伦兹因子。形成下游区域,将正向和反向冲击分开。在该区域中,等离子体接近电子,离子和磁场之间的能量均分。电子能谱N(E)类似于高能时的幂定律,其指数接近-2.7或N(E)∝ E〜(-2.7)。磁场反射上游离子,形成离子束并拖曳电子,以保持等离子体准中性。由于平板密度不相等,正向和反向冲击是不对称的。前向冲击可以代表伽马射线暴的内部冲击。

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