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The computation of Comptonization – A comparison between generalized Kompaneets equation and Monte Carlo method

机译:Comptonization的计算–广义Kompaneets方程与Monte Carlo方法的比较

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摘要

The down-Comptonization, which occurs during the passage of hard X-rays through "cold" plasmas, is an important process of radiative transfer in X-ray astronomy and radiation physics. This paper presents a brief introduction to the the generalized Kompaneets equation, which may be widely valid under rather loose conditions of hv-bar m_ec~2 and kT_e mec~2. It can be used for both the up- Comptonization (hv-bar m_ec~2) and down-Comptonization (hv-bar m_ec~2). The latter is exceedingly important for X-ray and -ray astronomy, which are developing rapidly these days. On the basis of this equation, the spectral evolution is numerically investigated for four common radiation spectra in astrophysics (namely, the Gaussian-type emission line, the blackbody spectrum, the powerlaw spectrum and the thermal bremsstrahlung radiation spectrum) in the case of down-Comptonization. We compare the results with the results of Monte Carlo simulation, and the correctness and effectiveness of the generalized Kompaneets equation are confirmed. Finally, the important significance and potential applications of this equation in X-ray and γ-ray astronomy are pointed out.
机译:在硬X射线穿过“冷”等离子体的过程中发生的向下Comptonization是X射线天文学和辐射物理学中辐射转移的重要过程。本文简要介绍了广义Kompaneets方程,该方程在hv-bar m_ec〜2和kT_e mec〜2的相当宽松的条件下可能有效。它既可用于上Comptonization(hv-bar m_ec〜2),也可用于下Comptonization(hv-bar m_ec〜2)。对于近来发展迅速的X射线和X射线天文学,后者极为重要。在此方程的基础上,对天体物理学中四个常见的辐射光谱(即高斯型发射谱线,黑体光谱,幂律光谱和热致辐射辐射光谱)进行了数值研究。丰富化。我们将结果与蒙特卡罗模拟的结果进行比较,并证实了广义Kompaneets方程的正确性和有效性。最后指出了该方程在X射线和γ射线天文学中的重要意义和潜在应用。

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