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Nonlinear particle acceleration in relativistic shocks

机译:相对论冲击中的非线性粒子加速度

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Monte Carlo techniques are used to model nonlinear particle acceleration in parallel collisionless shocks of various speeds, including mildly relativistic ones. When the acceleration is efficient, the backreaction of accelerated particles modifies the shock structure and causes the compression ratio, r, to increase above test-particle values. Modified shocks with Lorentz factors, gamma(0) less than or similar to 3, can have compression ratios considerably >3 and the momentum distribution of energetic particles no longer follows a power law relation. These results may be important for the interpretation of gamma-ray bursts if mildly relativistic internal and/or afterglow shocks play an important role accelerating particles that produce the observed radiation. For gamma(0) greater than or similar to 10, r approaches 3 and the so-called 'universal' test-particle result of N(E) proportional to E-(2.3) is obtained for sufficiently energetic particles. In all cases, the absolute normalization of the particle distribution follows directly from our model assumptions and is explicitly determined. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 36]
机译:蒙特卡罗技术用于模拟各种速度(包括轻度相对论)的平行无碰撞冲击中的非线性粒子加速度。当加速有效时,加速粒子的后反应会改变冲击结构,并使压缩比r增加到测试粒子值之上。具有Lorentz因子(小于或等于3的洛伦兹因子)的修改后的冲击可以使压缩比大大大于3,并且高能粒子的动量分布不再遵循幂律关系。如果轻微的相对论内部和/或余辉冲击在加速产生观察到的辐射的粒子方面起重要作用,那么这些结果对于解释伽马射线爆发可能是重要的。对于大于或等于10的gamma(0),r接近3,对于足够高能的粒子,获得与E-(2.3)成比例的N(E)的“通用”测试粒子结果。在所有情况下,粒子分布的绝对归一化直接来自于我们的模型假设,并且是明确确定的。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:36]

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