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首页> 外文期刊>The Astrophysical journal >ELECTRON-ION RECOMBINATION OF Fe12 + FORMING Fe11 +: LABORATORY MEASUREMENTS AND THEORETICAL CALCULATIONS
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ELECTRON-ION RECOMBINATION OF Fe12 + FORMING Fe11 +: LABORATORY MEASUREMENTS AND THEORETICAL CALCULATIONS

机译:Fe12 +形成Fe11 +的电子离子重组:实验室测量和理论计算

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We have measured dielectronic recombination (DR) for Fe12 + forming Fe11 + using the heavy ion storage ring TSR located at the Max Planck Institute for Nuclear Physics in Heidelberg, Germany. Using our results, we have calculated a plasma rate coefficient from these data that can be used for modeling astrophysical and laboratory plasmas. For the low temperatures characteristic of photoionized plasmas, the experimentally derived rate coefficient is orders of magnitude larger than the previously recommended atomic data. The existing atomic data were also about 40% smaller than our measurements at temperatures relevant for collisionally ionized plasmas. Recent state-of-the-art theory has difficulty reproducing the detailed energy dependence of the DR spectrum. However, for the Maxwellian plasma rate coefficient, recent theoretical results agree with our measurements to within about 30% for both photoionized and collisionally ionized plasmas.
机译:我们使用位于德国海德堡马克斯·普朗克核物理研究所的重离子存储环TSR测量了Fe12 +形成Fe11 +的双电子复合(DR)。使用我们的结果,我们已经从这些数据中计算出了血浆速率系数,可用于对天体物理和实验室血浆进行建模。对于光电离等离子体的低温特性,实验得出的速率系数比以前推荐的原子数据大几个数量级。在与碰撞离子化等离子体有关的温度下,现有的原子数据也比我们的测量结果小约40%。最近的最新理论难以再现DR光谱的详细能量依赖性。但是,对于麦克斯韦血浆等离子体速率系数,最近的理论结果与我们的测量结果相符,对于电离和碰撞电离等离子体,其测量值均在约30%以内。

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