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Resolution of the forbidden (J = 0 → 0) excitation puzzle in Mg-like ions

机译:Mg离子中禁忌(J = 0→0)激发难题的解析

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We investigate the source of the discrepancy between R-matrix and distorted-wave (DW) collision strengths for J ? J′ = 0–0 transitions in Mg-like ions, for example 3s21S0–3p21S0, as reported previously. We find it to be due to the neglect of coupling, for example via 3s3p 1P1, as done by most DW codes. We have implemented an option to account for such coupling as a perturbation within the autostructure DW code. This removes the discrepancy of a factor ~10 and ~100 for Fe14 + and S4 +, respectively, for such transitions. The neglect of coupling would have affected (to some degree) the atomic data for a few weak optically forbidden transitions in other isoelectronic sequences if they were calculated with DW codes such as FAC and HULLAC. In addition, we compare the Fe14 + line intensities predicted with the R-matrix collision strengths against observations of solar active regions and flares; they agree well. For Fe14 +, we suggest that the best density diagnostic ratio is 327.0/321.8 ?.
机译:我们研究了J矩阵的R矩阵与扭曲波(DW)碰撞强度之间差异的来源。如先前报道,J'= 0–0在类Mg离子中跃迁,例如3s21S0–3p21S0。我们发现这是由于忽略了耦合,例如通过大多数DW代码进行的3s3p 1P1耦合。我们实现了一个选项来解决这种耦合问题,例如自动结构DW代码中的扰动。对于这种过渡,这分别消除了Fe14 +和S4 +的因子〜10和〜100的差异。如果使用DW代码(例如FAC和HULLAC)进行计算,则忽略耦合将在某种程度上影响其他等电子序列中一些弱光学禁止跃迁的原子数据。另外,我们将与R-基体碰撞强度预测的Fe14 +谱线强度与太阳活动区和耀斑的观测值进行了比较;他们同意。对于Fe14 +,我们建议最佳密度诊断比为327.0 / 321.8?。

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