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The Hybrib Detailed/Statistical Opacity Code SCO-RCG: New Developments and Applications

机译:HYBRIB详细/统计不透明度代码SCO-RCG:新的开发和应用

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We present the hybrid opacity code SCO-RCG which combines statistical approaches with fine-structure calculations. Radial integrals needed for the computation of detailed transition arrays are calculated by the code SCO (Super-configuration Code for Opacity), which calculates atomic structure at finite temperature and density, taking into account plasma effects on the wave-functions. Levels and spectral lines are then computed by an adapted RCG routine of R. D. Cowan. SCO-RCG now includes the Partially Resolved Transition Array model, which allows one to replace a complex transition array by a small-scale detailed calculation preserving energy and variance of the genuine transition array and yielding improved high-order moments. An approximate method for studying the impact of strong magnetic field on opacity and emissivity was also recently implemented.
机译:我们介绍了混合透明度代码SCO-RCG,它将统计方法与细结构计算结合起来。计算详细转变阵列所需的径向积分由代码SCO(不透明度的超级配置代码)计算,其计算有限温度和密度的原子结构,考虑到波浪函数的等离子体效应。然后通过适应的R. D. Cowan的RCG常规计算水平和光谱线。 SCO-RCG现在包括部分解析的转换阵列模型,它允许一个人通过小规模的详细计算保持复杂的转换阵列,保存能量和原始转换阵列的方差,并产生改善的高阶矩。最近还实施了研究强磁场对不透明度和发射率的影响的近似方法。

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