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首页> 外文期刊>The Astrophysical journal >THE INFLUENCE OF AN AMBIENT MAGNETIC FIELD ON RELATIVISTIC COLLISIONLESS PLASMA SHOCKS
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THE INFLUENCE OF AN AMBIENT MAGNETIC FIELD ON RELATIVISTIC COLLISIONLESS PLASMA SHOCKS

机译:环境磁场对相对论无碰撞等离子体激波的影响

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摘要

Plasma outflows from gamma-ray bursts, supernovae, and relativistic jets, in general, interact with the surrounding medium through collisionless shocks. The microphysics of such shocks are still poorly understood, which, potentially, can introduce uncertainties in the interpretation of observations. It is now well established that the Weibel two-stream instability is capable of generating strong electromagnetic fields in the transition region between the jet and the ambient plasma. However, the parameter space of collisionless shocks is vast and still remains unexplored. In this Letter, we focus on how an ambient magnetic field affects the evolution of the electron Weibel instability and the associated shock. Using a particle-in-cell code, we have performed three-dimensional numerical experiments on such shocks. We compare simulations in which a jet is injected into an unmagnetized plasma with simulations in which the jet is injected into a plasma with an ambient magnetic field both parallel and perpendicular to the jet flow. We find that there exists a threshold of the magnetic field strength below which the Weibel two-stream instability dominates, and we note that the interstellar medium magnetic field strength lies well below this value. In the case of a strong magnetic field parallel to the jet, the Weibel instability is quenched. In the strong perpendicular case, ambient and jet electrons are strongly accelerated because of the charge separation between deflected jet electrons and less deflected jet ions. Also, the electromagnetic topologies become highly nonlinear and complex with the appearance of antiparallel field configurations.
机译:通常,来自伽马射线爆发,超新星和相对论射流的等离子体流出会通过无碰撞冲击与周围的介质相互作用。此类冲击的微观物理学仍知之甚少,这可能会在观测结果的解释中引入不确定性。现在已经很好地证明,Weibel两流不稳定性能够在射流和周围等离子体之间的过渡区域中产生强电磁场。但是,无碰撞冲击的参数空间很大,仍然没有被探索。在这封信中,我们重点讨论环境磁场如何影响电子威贝尔不稳定性和相关冲击的演变。使用单元中的粒子代码,我们对这种冲击进行了三维数值实验。我们比较了将喷射流注入未磁化等离子体的模拟与其中将喷射流注入具有平行于和垂直于射流的环境磁场的等离子体的模拟。我们发现存在一个磁场强度阈值,在该阈值以下,Weibel两流不稳定性占主导地位,并且我们注意到星际介质磁场强度远低于该值。在平行于射流的强磁场中,韦贝尔不稳定性被淬灭。在强垂直情况下,由于偏转的喷射电子和偏转程度较小的喷射离子之间的电荷分离,强烈促进了周围电子和喷射电子的加速。而且,随着反平行场配置的出现,电磁拓扑变得高度非线性和复杂。

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