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Direct numerical method to solve radiation trapping problems with a Doppler-broadening mechanism for partial frequency redistribution - art. no. 022719

机译:用多普勒扩展机制解决部分频率重新分布问题的直接数值方法,用于解决辐射捕获问题没有。 022719

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摘要

We present a numerical method for solving the Holstein-Biberman-Payne equation with Doppler frequency redistribution. The method is based on direct time propagation of the initial distribution of excited atoms, employing the split-propagation technique. It allows a precise study of various aspects of radiation transfer phenomena occurring in an arbitrary convex three-dimensional spatial region, driven by external conditions with arbitrary time dependencies. We present some results obtained for slab and spherically shaped geometries and compare them to results from other evaluation methods. The efficiency of the method is demonstrated by determining the intensity of radiation escaping the gas cell in afterglow experiments. [References: 38]
机译:我们提出了一种用多普勒频率重新分布求解Holstein-Biberman-Payne方程的数值方法。该方法基于采用分裂传播技术的受激原子初始分布的直接时间传播。它允许对由外部条件和任意时间依赖性驱动的,在任意凸面三维空间区域中发生的辐射传输现象的各个方面进行精确研究。我们介绍了从平板和球形几何图形获得的一些结果,并将它们与其他评估方法的结果进行了比较。通过确定余辉实验中逸出气体电池的辐射强度,可以证明该方法的有效性。 [参考:38]

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