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Dielectronic Recombination of Fe XXIII Forming Fe XXII: Laboratory Measurements and Theoretical Calculations

机译:Fe XXIII形成Fe XXII的双电子复合:实验室测量和理论计算

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We have measured resonance strengths and energies for dielectronic recombination (DR) of beryllium-like Fe XXIII forming boron-like Fe XXII via N = 2 → N' = 2 and N = 2 → N' = 3 core excitations. All measurements were carried out using the heavy-ion Test Storage Ring at the Max Planck Institute for Nuclear Physics (MPI-K) in Heidelberg, Germany. We have also calculated these resonance strengths and energies using three independent, perturbative, state-of-the-art theoretical techniques: the multiconfiguration Breit-Pauli (MCBP) method, the multiconfiguration Dirac-Fock (MCDF) method, and the Flexible Atomic Code (FAC). Overall reasonable agreement is found between our experimental results and these theoretical calculations. We have used our measurements to produce a Maxwellian-averaged DR rate coefficient for Fe XXIII. Our experimentally derived rate coefficient is estimated to be accurate to better that ≈20%. At temperatures where Fe XXIII is predicted to form in both photoionized and electron-ionized gas, we find mixed agreement between our experimental rate coefficient and previously published rate coefficients. We find good agreement at these temperatures between the experimentally derived rate coefficient and our MCBP, MCDF, and FAC results.
机译:我们已经测量了通过N = 2→N'= 2和N = 2→N'= 3的核激发,形成铍状Fe XXII的铍状Fe XXIII的双电子复合(DR)的共振强度和能量。所有测量均使用位于德国海德堡的马克斯·普朗克核物理研究所(MPI-K)的重离子测试存储环进行。我们还使用三种独立的,扰动的最新理论技术计算了这些共振强度和能量:多配置Breit-Pauli(MCBP)方法,多配置Dirac-Fock(MCDF)方法和灵活原子代码(FAC)。在我们的实验结果与这些理论计算之间找到了总体合理的共识。我们已使用我们的测量结果得出了Fe XXIII的Maxwellian平均DR率系数。我们的实验得出的速率系数估计精确到约20%。在预计在光离子化和电子离子化的气体中都将形成Fe XXIII的温度下,我们发现实验速率系数与先前发布的速率系数之间存在混合的一致性。我们发现,在这些温度下,实验得出的速率系数与MCBP,MCDF和FAC结果之间存在良好的一致性。

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