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ON COSMIC RAY ACCELERATION IN RELATIVISTIC JETS

机译:相对论射束中宇宙射线的加速

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摘要

We review the theoretical progress in the field of cosmic-ray first-order Fermi acceleration at relativistic shock fronts, showing that recent results change our knowledge about these processes substantially. In particular, relativistic shocks are unlikely to form particle distributions extending to very high energies. Instead, recent simulations give particle distributions where a shock-compressed injected component is followed by a more or less extended high energy tail. An increase of the Lorentz factor of the shock usually leads to steepening and a decrease of the energetic tail, so that fitted spectral indices to the high energy part can substantially deviate from the "universal power law index" sigma approximate to 2.2. We report on observational findings from the hot spots in Cygnus A, showing that the derived electron spectra (with a very. at, sigma approximate to 1.5, low energy part up to similar to 1 GeV, followed by a much steeper, sigma > 3, part at higher energies) indeed deviate from the standard expectation for relativistic shocks. We conclude with a short discussion of some qualitative features of shear and second-order Fermi acceleration in turbulent relativistic plasmas.
机译:我们回顾了相对论激波前沿的宇宙射线一阶费米加速度领域的理论进展,表明最近的结果大大改变了我们对这些过程的认识。特别是,相对论性的冲击不太可能形成扩展到非常高能量的粒子分布。取而代之的是,最近的模拟给出了粒子分布,其中冲击压缩的注入分量后面跟随着或多或少延伸的高能尾巴。激波的洛伦兹因子的增加通常会导致陡峭和尾部能量的减少,因此,高能部分的拟合光谱指数可能会明显偏离近似于2.2的“通用幂律指数” sigma。我们报告了来自天鹅座A热点的观测结果,结果表明,得出的电子光谱(非常大的sigma约为1.5,低能部分高达1 GeV,然后陡峭得多,sigma> 3 (部分能量较高))确实偏离了相对论性冲击的标准期望。我们以湍流相对论等离子体中的剪切和二阶费米加速度的一些定性特征作简短讨论作为结束。

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