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首页> 外文期刊>Physica Scripta: An International Journal for Experimental and Theoretical Physics >Energy levels, radiative rates and electron impact excitation rates for transitions in He-like Fe XXV, Co XXVI, Ni XXVII, Cu XXVIII and Zn XXIX
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Energy levels, radiative rates and electron impact excitation rates for transitions in He-like Fe XXV, Co XXVI, Ni XXVII, Cu XXVIII and Zn XXIX

机译:He样Fe XXV,Co XXVI,Ni XXVII,Cu XXVIII和Zn XXIX中跃迁的能级,辐射速率和电子冲击激发速率

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We report calculations of energy levels, radiative rates and electron impact excitation cross sections and rates for transitions in He-like Fe XXV, Co XXVI, Ni XXVII, Cu XXVIII and Zn XXIX. The grasp (general-purpose relativistic atomic structure package) is adopted for calculating energy levels and radiative rates. For determining the collision strengths and subsequently the excitation rates, the Dirac atomic R-matrix code (darc) is used. Oscillator strengths, radiative rates and line strengths are reported for all E1, E2, M1 and M2 transitions among the lowest 49 levels of each ion. Additionally, theoretical lifetimes are listed for all 49 levels of the above five ions. Collision strengths are averaged over a Maxwellian velocity distribution and the effective collision strengths obtained listed over a wide temperature range up to 10 7.7 K. Comparisons are made with similar data obtained using the flexible atomic code (fac) to highlight the importance of resonances, included in calculations with darc, in the determination of effective collision strengths. Discrepancies between the collision strengths from darc and fac, for some transitions, are also discussed. Finally, discrepancies between the present results of effective collision strengths with the darc code and earlier semi-relativistic R-matrix data are noted over a wide range of electron temperatures for many transitions in all ions.
机译:我们报告了能级,辐射速率和电子冲击激发截面的计算,以及类似He的Fe XXV,Co XXVI,Ni XXVII,Cu XXVIII和Zn XXIX的跃迁速率的计算。掌握(通用相对论原子结构软件包)用于计算能级和辐射率。为了确定碰撞强度以及随后的激发率,使用了狄拉克原子R-矩阵代码(darc)。报告了每个离子的最低49能级中所有E1,E2,M1和M2跃迁的振荡器强度,辐射速率和线强度。此外,列出了上述五个离子的所有49个水平的理论寿命。碰撞强度是在麦克斯韦速度分布上求平均值的,并且有效碰撞强度是在高达10 7.7 K的宽温度范围内列出的。与使用弹性原子代码(fac)获得的相似数据进行了比较,以强调共振的重要性,包括在使用darc计算时,在确定有效碰撞强度时。对于某些过渡,还讨论了darc和fac的碰撞强度之间的差异。最后,在所有离子的许多跃迁的大范围电子温度下,注意到与darc码的有效碰撞强度的当前结果与较早的半相对论R矩阵数据之间的差异。

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