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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Absolute rate coefficients for photorecombination and electron-impact ionization of magnesiumlike iron ions from measurements at a heavy-ion storage ring
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Absolute rate coefficients for photorecombination and electron-impact ionization of magnesiumlike iron ions from measurements at a heavy-ion storage ring

机译:通过重离子存储环的测量,镁样铁离子的光重组和电子碰撞电离的绝对速率系数

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摘要

Rate coefficients for photorecombination (PR) and cross sections for electron-impact ionization (EII) of Fe~(14+), forming Fe~(13+) and Fe~(15+), respectively, have been measured by employing the electron-ion merged-beams technique at a heavy-ion storage ring. Rate coefficients for PR and EII of Fe~(14+) ions in a plasma are derived from the experimental measurements. Simple parametrizations of the experimentally derived plasma rate coefficients are provided for use in the modeling of photoionized and collisionally ionized plasmas. In the temperature ranges where Fe~(14+) is expected to form in such plasmas, the latest theoretical rate coefficients of Altun et al. [Astron. Astrophys. 474, 1051 (2007)] for PR and of Dere [Astron. Astrophys. 466, 771 (2007)] for EII agree with the experimental results to within the experimental uncertainties. Common features in the PR and EII resonance structures are identified and discussed.
机译:通过使用电子测量了分别形成Fe〜(13+)和Fe〜(15+)的Fe〜(14+)的光重组率(PR)和电子碰撞电离(EII)的截面系数。重离子存储环处的离子合并电子束技术。通过实验测量得出等离子体中Fe〜(14+)离子的PR和EII的速率系数。提供了实验得出的等离子体速率系数的简单参数化,用于光离子化和碰撞离子化等离子体的建模。在预期在此类等离子体中形成Fe〜(14+)的温度范围内,Altun等人的最新理论速率系数。 [Astron。天体。 474,1051(2007)]为PR和Dere [Astron。天体。 [466,771(2007)]的EII与实验结果在实验不确定性范围内是一致的。识别和讨论了PR和EII共振结构的共同特征。

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