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ACCURATE CALCULATIONS OF INTERSTELLAR LINES OF Mg+ USING THE COUPLED CLUSTER APPROACH

机译:耦合聚类法精确计算Mg +星际线

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One of the most successful ab initio, highly correlated all-order many-body methods, the relativistic coupled cluster theory, is employed to calculate excitation energies of the doublet states of Mg~+ and allowed transitions among them that are of interest in astrophysical problems. We have also calculated oscillator strength for the 3s-4p doublet transitions, which is improved over the existing results. These transition lines have been sought after in astronomical observations because they represent the best column density identifier in the interstellar medium. Our calculated oscillator strength (9.3 x 10~(-4)) and branching ratio (1.80) of these doublet lines matches well with the recent empirical and semiempirical calculations.
机译:相对论耦合聚类理论是最成功的从头算起,高度相关的全体多体方法之一,用于计算Mg〜+的双峰态的激发能,并允许其中的转变与天体物理问题相关。我们还计算了3s-4p双重峰跃迁的振荡器强度,该强度比现有结果有所提高。这些过渡线已经在天文观测中得到了追捧,因为它们代表了星际介质中的最佳列密度标识符。我们计算出的这些双峰线的振子强度(9.3 x 10〜(-4))和分支比(1.80)与最近的经验和半经验计算非常吻合。

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