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Collisional-Radiative Modeling of Tungsten at Temperatures of 1200–2400 eV

机译:1200–2400 eV温度下钨的碰撞辐射建模

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We discuss new collisional-radiative modeling calculations of tungsten at moderate temperatures of 1200 to 2400 eV. Such plasma conditions are relevant to ongoing experimental work at ASDEX Upgrade and are expected to be relevant for ITER. Our calculations are made using the Los Alamos National Laboratory (LANL) collisional-radiative modeling ATOMIC code. These calculations formed part of a submission to the recent NLTE-8 workshop that was held in November 2013. This series of workshops provides a forum for detailed comparison of plasma and spectral quantities from NLTE collisional-radiative modeling codes. We focus on the LANL ATOMIC calculations for tungsten that were submitted to the NLTE-8 workshop and discuss different models that were constructed to predict the tungsten emission. In particular, we discuss comparisons between semi-relativistic configuration-average and fully relativistic configuration-average calculations. We also present semi-relativistic calculations that include fine-structure detail, and discuss the difficult problem of ensuring completeness with respect to the number of configurations included in a CR calculation.
机译:我们讨论了在1200至2400 eV的中等温度下钨的新的碰撞辐射模型计算。此类血浆条件与ASDEX升级中正在进行的实验工作有关,并且有望与ITER有关。我们的计算是使用洛斯阿拉莫斯国家实验室(LANL)碰撞辐射建模ATOMIC代码进行的。这些计算是向2013年11月举行的NLTE-8研讨会提交的报告的一部分。该系列研讨会提供了一个论坛,用于详细比较NLTE碰撞辐射建模代码中的等离子体和光谱量。我们集中于提交给NLTE-8研讨会的钨的LANL ATOMIC计算,并讨论了用于预测钨排放的不同模型。特别是,我们讨论了半相对论配置平均计算与完全相对论配置平均计算之间的比较。我们还提出了半相对论的计算方法,其中包括精细的结构细节,并讨论了确保CR计算中包含的配置数量相对完整的难题。

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