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首页> 外文期刊>The Astrophysical journal >ELECTRON-IMPACT EXCITATION OF Fe2 +: A COMPARISON OF INTERMEDIATE COUPLING FRAME TRANSFORMATION, BREIT-PAULI AND DIRAC R-MATRIX CALCULATIONS
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ELECTRON-IMPACT EXCITATION OF Fe2 +: A COMPARISON OF INTERMEDIATE COUPLING FRAME TRANSFORMATION, BREIT-PAULI AND DIRAC R-MATRIX CALCULATIONS

机译:Fe2 +的电子冲击激发:中间耦合框架转化,BREIT-PAULI和DIRAC R-矩阵计算的比较

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摘要

Modeling the spectral emission of low-charge iron group ions enables the diagnostic determination of the local physical conditions of many cool plasma environments such as those found in H II regions, planetary nebulae, active galactic nuclei, etc. Electron-impact excitation drives the population of the emitting levels and, hence, their emissivities. By carrying-out Breit-Pauli and intermediate coupling frame transformation (ICFT) R-matrix calculations for the electron-impact excitation of Fe2 +, which both use the exact same atomic structure and the same close-coupling expansion, we demonstrate the validity of the application of the powerful ICFT method to low-charge iron group ions. This is in contradiction to the finding of Bautista et?al., who carried-out ICFT and Dirac R-matrix calculations for the same ion. We discuss possible reasons.
机译:对低电荷铁族离子的光谱发射进行建模,就可以诊断确定许多冷等离子体环境的局部物理条件,例如在H II区,行星状星云,活跃银河核等中发现的那些。电子碰撞激发了整个种群的发射水平,因此,其发射率。通过对Fe2 +的电子碰撞激发进行Breit-Pauli和中间耦合框架变换(ICFT)R矩阵计算,它们都使用完全相同的原子结构和相同的紧密耦合展开,我们证明了强大的ICFT方法在低电荷铁离子中的应用。这与鲍蒂斯塔等人的发现相矛盾,鲍蒂斯塔等人对同一离子进行了ICFT和Dirac R矩阵计算。我们讨论了可能的原因。

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