论文标题

相对论剪切流中的粒子加速度:能量光谱

Particle Acceleration in Relativistic Shearing Flows: Energy Spectrum

论文作者

Rieger, Frank M., Duffy, Peter

论文摘要

我们考虑相对论剪切流中带电颗粒的加速度,洛伦兹因子高达$γ_0\ sim 20 $。我们提出了粒子传输方程的数值解,并将其与分析计算结果进行了比较。 We show that in the highly relativistic limit the particle energy spectrum that results from acceleration approaches a power law, $N(E)\propto E^{-\tilde{q}}$, with a universal value $\tilde{q}=(1+α)$ for the slope of this power law, where $α$ parameterizes the power-law momentum dependence of the particle mean free path.在轻度相对论的流速度下,能量光谱变得越来越柔和,对基础流量曲线敏感。我们探讨了不同的流动示例,包括高斯和幂律型速度曲线,表明后者产生的光谱相对较难,从而产生$ \ tilde {q} \ simeq 2 $ for $γ_0\ simeq 3 $和kolmogorov turbulence。我们提供了与简化的泄漏盒方法的比较,并得出了近似关系,用于估算光谱索引作为最大剪切流速的函数。这些结果与喷射高能的天体物理源(例如活性银河核)相关,因为剪切加速度是加速带电颗粒以加速相对论能量的有前途的机制,并且很可能有助于观察到的高能量辐射。

We consider the acceleration of charged particles in relativistic shearing flows, with Lorentz factor up to $Γ_0 \sim 20$. We present numerical solutions to the particle transport equation and compare these with results from analytical calculations. We show that in the highly relativistic limit the particle energy spectrum that results from acceleration approaches a power law, $N(E)\propto E^{-\tilde{q}}$, with a universal value $\tilde{q}=(1+α)$ for the slope of this power law, where $α$ parameterizes the power-law momentum dependence of the particle mean free path. At mildly relativistic flow speeds, the energy spectrum becomes softer and sensitive to the underlying flow profile. We explore different flow examples, including Gaussian and power-law-type velocity profiles, showing that the latter yield comparatively harder spectra, producing $\tilde{q}\simeq 2$ for $Γ_0 \simeq 3$ and Kolmogorov turbulence. We provide a comparison with a simplified leaky-box approach and derive an approximate relation for estimating the spectral index as a function of the maximum shear flow speed. These results are of relevance for jetted, high-energy astrophysical sources such as active galactic nuclei, since shear acceleration is a promising mechanism for the acceleration of charged particles to relativistic energies and is likely to contribute to the high-energy radiation observed.

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