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A three-dimensional ray-tracing code dedicated to x-ray laser amplification simulation

机译:专用于X射线激光放大模拟的三维射线追踪代码

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A three-dimensional (3D) ray-tracing code has been developed to simulate the x-ray intensity produced in recent experiments where a silver target was driven by two laser beams. The code is used as a postprocessor of a detailed atomic physics code, which provides emissivities and opacities for inverted transitions. The hydrodynamics of the plasma is calculated with a 1D1/2 hydrocode where transverse profiles of temperature and density follow a self-similar solution. The 3D ray-tracing code accounts for progressive target illumination and calculates the x-ray laser output by solving the eikonal equation. Once 3D paths are determined, a steady-state transport solution is used to calculate the output intensity. The ray-tracing package is discussed first, then the present 3D results are compared with 2D calculations, as well as with collected experimental data. (C) 2001 American Institute of Physics. [References: 24]
机译:已经开发了三维(3D)射线追踪代码,以模拟在最近的实验中产生的X射线强度,其中银靶是由两个激光束驱动的。该代码用作详细原子物理代码的后处理器,该代码提供了反向转换的发射率和不透明度。用1D1 / 2液压代码计算等离子体的流体动力学,其中温度和密度的横向分布遵循自相似解。 3D光线跟踪代码考虑了渐进式目标照明,并通过求解eikonal方程来计算X射线激光输出。确定3D路径后,将使用稳态传输解决方案来计算输出强度。首先讨论光线追踪程序包,然后将当前的3D结果与2D计算以及收集的实验数据进行比较。 (C)2001美国物理研究所。 [参考:24]

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