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Lepton Acceleration in Pulsar Wind Nebulae

机译:脉冲星云中的轻子加速

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Pulsar Wind Nebulae (PWNe) act as calorimeters for the relativistic pair winds emanating from within the pulsar light cylinder. Their radiative dissipation in various wavebands is significantly different from that of their pulsar central engines: the broadband spectra of PWNe possess characteristics distinct from those of pulsars, thereby demanding a site of lepton acceleration remote from the pulsar magnetosphere. A principal candidate for this locale is the pulsar wind termination shock, a putatively highly-oblique, ultra-relativistic MHD discontinuity. This paper summarizes key characteristics of relativistic shock acceleration germane to PWNe, using predominantly Monte Carlo simulation techniques that compare well with semi-analytic solutions of the diffusion-convection equation. The array of potential spectral indices for the pair distribution function is explored, defining how these depend critically on the parameters of the turbulent plasma in the shock environs. Injection efficiencies into the acceleration process are also addressed. Informative constraints on the frequency of particle scattering and the level of field turbulence are identified using the multiwavelength observations of selected PWNe. These suggest that the termination shock can be comfortably invoked as a principal injector of energetic leptons into PWNe without resorting to unrealistic properties for the shock layer turbulence or MHD structure.
机译:脉冲星云(PWNe)用作量热计,用于测量从脉冲星光圆柱体内发出的相对论对风。它们在各个波段的辐射耗散与脉冲星中央引擎的辐射耗散显着不同:PWNe的宽带光谱具有与脉冲星不同的特征,因此需要远离脉冲星磁层的轻子加速站点。这种位置的主要候选者是脉冲星风终止冲击,这是一种高度倾斜的超相对论的MHD不连续性。本文主要使用相对于扩散对流方程的半解析解进行比较的主要蒙特卡罗模拟技术,总结了相对论性冲击加速度与PWNe的关键特性。探索了成对分布函数的潜在光谱指数阵列,定义了这些光谱指数如何严重依赖于冲击环境中湍流等离子体的参数。还讨论了加速过程中的喷射效率。使用所选PWNe的多波长观测,可以确定对粒子散射频率和场湍流水平的信息约束。这些表明,可以将终止冲击作为高能轻子的主要注入者轻松地引入PWNe中,而不必对冲击层湍流或MHD结构求助于不切实际的特性。

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