Spectroscopic and x-ray scattering models in SPECT3D

I. Golovkin, J. Macfarlane, P. Woodruff, S. Kulkarni, I. Hall, G. Gregori, J. Bailey, E. Harding, T. Ao
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Abstract

Summary form only given. Spectrally resolved x-ray scattering has become a very effective method for diagnosing electron temperatures, densities, and average ionization in warm dense matter. We present a newly implemented capability to simulate scattering signatures from realistic experimental configurations, which include the influence of plasma non-uniformities and collecting scattered x-rays from a range of angles. The method is based on a formalism developed by G. Gregori1. The x-ray scattering modeling has been added to the multidimensional collisional-radiative spectral and imaging package SPECT3D2. The ability to simulate the emissivity and attenuation of scattered photons within a multidimensional multi-volume-element plasma with non-uniform temperature and density distributions adds a major new capability to existing model. We will discuss details of the modeling and show results relevant to ongoing experimental investigations at Sandia National Laboratories.
spec3d中的光谱和x射线散射模型
只提供摘要形式。光谱分辨x射线散射已成为诊断热致密物质中电子温度、密度和平均电离的一种非常有效的方法。我们提出了一种新实现的能力来模拟现实实验配置的散射特征,包括等离子体不均匀性的影响和从一系列角度收集散射x射线。该方法基于G. gregorii开发的一种形式体系。在spectr3d2多维碰撞辐射光谱和成像包中增加了x射线散射建模。模拟具有非均匀温度和密度分布的多维多体元等离子体中散射光子的发射率和衰减的能力为现有模型增加了一项主要的新功能。我们将讨论建模的细节,并展示与桑迪亚国家实验室正在进行的实验调查相关的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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