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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >KINETIC SIMULATIONS OF THE CURRENT-DRIVEN INSTABILITY IN COSMIC RAY MODIFIED RELATIVISTIC SHOCKS
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KINETIC SIMULATIONS OF THE CURRENT-DRIVEN INSTABILITY IN COSMIC RAY MODIFIED RELATIVISTIC SHOCKS

机译:宇宙射线修正的相对激波中电流驱动的不稳定性的运动学模拟

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摘要

We study the current-driven instability predicted by Bell (2004) using particle-in-cell simulations. We use one-dimensional simulations to test the dispersion relation and the nonlinear properties of the instability for the case of a relativistic shock front under idealized conditions. We find that if the cosmic rays (CR) are energetic enough to not get deflected by the generated magnetic field, the instability can grow exponentially until the Alfven velocity of the plasma becomes comparable to the speed of light. We also use one- and two-dimensional simulations to study the effect of the back reaction of the instability on CR. We find that the deflection and. lamentation of CR and background plasma play an important role in the saturation of the instability. The current-driven instability is a viable mechanism for the amplification of magnetic fields in both non-relativistic and relativistic shock environments.
机译:我们研究了Bell(2004)使用单元格内粒子模拟预测的电流驱动的不稳定性。我们使用一维模拟来测试理想条件下相对论激波锋的情况下的色散关系和不稳定性的非线性特性。我们发现,如果宇宙射线(CR)的能量足够高而不会被所产生的磁场偏转,则不稳定性会呈指数增长,直到等离子体的Alfven速度变得与光速相当为止。我们还使用一维和二维模拟来研究不稳定性的反作用对CR的影响。我们发现偏转和。 CR和背景血浆的沉着在不稳定的饱和中起重要作用。电流驱动的不稳定性是在非相对论和相对论冲击环境中放大磁场的可行机制。

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