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首页> 外文期刊>The Astrophysical journal >THE EFFECT OF DIFFUSION ON THE PARTICLE SPECTRA IN PULSAR WIND NEBULAE
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THE EFFECT OF DIFFUSION ON THE PARTICLE SPECTRA IN PULSAR WIND NEBULAE

机译:扩散对脉冲星云中粒子谱的影响

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A possible way to calculate particle spectra as a function of position in pulsar wind nebulae is to solve a Fokker-Planck transport equation. This paper presents numerical solutions to the transport equation with the?processes of convection, diffusion, adiabatic losses, and synchrotron radiation included. In the first part of the paper, the steady-state version of the transport equation is solved as a function of position and energy. This is done to distinguish the various effects of the aforementioned processes on the solutions to the transport equation. The second part of the paper deals with a time-dependent solution to the transport equation, specifically taking into account the effect of a moving outer boundary. The paper highlights the fact that diffusion can play a significant role in reducing the amount of synchrotron losses, leading to a modification in the expected particle spectra. These modified spectra can explain the change in the photon index of the synchrotron emission as a function of position. The solutions presented in this paper are not limited to pulsar wind nebulae, but can be applied to any similar central source system, e.g., globular clusters.
机译:根据脉冲星云中位置的函数计算粒子光谱的一种可能方法是求解Fokker-Planck输运方程。本文提出了输运方程的数值解,其中包括对流,扩散,绝热损失和同步加速器辐射的过程。在本文的第一部分中,运输方程的稳态形式根据位置和能量进行求解。这样做是为了区分上述过程对输运方程解的各种影响。本文的第二部分讨论了运输方程的时间相关解,特别是考虑了移动外边界的影响。该论文强调了这样一个事实,即扩散可以在减少同步加速器损耗的数量中发挥重要作用,从而导致预期粒子光谱的改变。这些修改后的光谱可以解释同步加速器发射的光子指数随位置的变化。本文介绍的解决方案不仅限于脉冲星云,还可以应用于任何类似的中心源系统,例如球状星团。

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