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Collisional ionization equilibrium for optically thin plasmas. I. Updated recombination rate coefficients for bare through sodium-like ions

机译:光学薄等离子体的碰撞电离平衡。一,更新的类似钠离子的裸露复合率系数

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摘要

Reliably interpreting spectra from electron-ionized cosmic plasmas requires accurate ionization balance calculations for the plasma in question. However, much of the atomic data needed for these calculations have not been generated using modern theoretical methods and are often highly suspect. This translates directly into the reliability of the collisional ionization equilibrium (CIE) calculations. We make use of state-of-the-art calculations of dielectronic recombination (DR) rate coefficients for the hydrogenic through Na-like ions of all elements from He up to and including Zn. Where measurements exist, these published theoretical DR data agree with recent laboratory work to within typically 35% or better at the temperatures relevant for CIE. We also make use of state-of-the-art radiative recombination (RR) rate coefficient calculations for the bare through Na-like ions of all elements from H through to Zn. Here we present improved CIE calculations for temperatures from 104 to 109 K using our data and the recommended electron impact ionization data of Mazzotta et al. for elements up to and including Ni and Mazzotta for Cu and Zn. DR and RR data for ionization stages that have not been updated are also taken from these two additional sources. We compare our calculated fractional ionic abundances using these data with those presented by Mazzotta et al. for all elements from H to Ni. The differences in peak fractional abundance are up to 60%. We also compare with the fractional ionic abundances for Mg, Si, S, Ar, Ca, Fe, and Ni derived from the modern DR calculations of Gu for the H-like through Na-like ions, and the RR calculations of Gu for the bare through F-like ions. These results are in better agreement with our work, with differences in peak fractional abundance of less than 10%.
机译:可靠地解释电子电离宇宙等离子体的光谱需要对所讨论的等离子体进行准确的电离平衡计算。但是,这些计算所需的许多原子数据尚未使用现代理论方法生成,因此常常令人怀疑。这直接转化为碰撞电离平衡(CIE)计算的可靠性。我们利用最新技术计算了从He到锌(包括Zn)中所有元素的氢离子到Na离子的氢离子的双电子复合(DR)速率系数。在存在测量值的情况下,这些已发布的理论DR数据与近期的实验室工作相吻合,并且在与CIE有关的温度下通常不超过35%。我们还利用最新技术的辐射复合(RR)速率系数计算了从H到Zn的所有元素的裸露至Na样离子。在这里,我们使用我们的数据和Mazzotta等人推荐的电子碰撞电离数据,提出了改进的CIE计算,适用于104至109 K的温度。适用于不超过Ni和Mazzotta的Cu和Zn元素。尚未更新的电离阶段的DR和RR数据也来自这两个附加来源。我们将这些数据与Mazzotta等人提供的数据进行比较,计算出的分数离子丰度。从H到Ni的所有元素。峰分数丰度的差异高达60%。我们还比较了M,Si,S,Ar,Ca,Fe和Ni的离子分数丰度,这些离子丰度是从对H样到类似Na的Gu的现代DR计算得出的Gu的RR得出的。通过类F离子裸露这些结果与我们的工作更加吻合,峰分数丰度的差异小于10%。

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