论文标题

靠近双重电荷铁离子的单一和多次光电离

Near L-Edge Single and Multiple Photoionization of Doubly Charged Iron Ions

论文作者

Schippers, Stefan, Beerwerth, Randolf, Bari, Sadia, Buhr, Ticia, Holste, Kristof, Kilcoyne, A. L. David, Perry-Sassmannshausen, Alexander, Phaneuf, Ronald A., Reinwardt, Simon, Savin, Daniel Wolf, Schubert, Kaja, Fritzsche, Stephan, Martins, Michael, Müller, Alfred

论文摘要

使用同步子源处的光子离子合并束技术,我们测量了在能量范围690--920 eV中的fe $^{2+} $离子的单个和最多五倍的光电离。该范围包含与电离和激发$ 2p $和$ 2S $电子相关的阈值和共振。进行计算以模拟总吸收光谱。理论结果表明,如果将高达2.5 eV的总体转移应用于计算出的共振位置,并且对Fe $^{2+} $([AR] $ 3D^6 $)的初始实验人群的初始实验人群进行了良好的一致性。此外,我们对钻头级联反应进行了广泛的计算,这些计算是从$ 2p $ $^{2+} $的$ 2p $ subshel​​l中删除时导致的。与早期工作相比,这些计算与测量的产品充电状态分布达成了更好的一致性。我们得出的结论是,低电荷铁离子的$ L $壳吸收特征有助于鉴定星际介质中的气相铁,并可以区分各种形式的冷凝相铁结合到复合星际粉尘颗粒。

Using the photon-ion merged-beams technique at a synchrotron light source, we have measured relative cross sections for single and up to five-fold photoionization of Fe$^{2+}$ ions in the energy range 690--920 eV. This range contains thresholds and resonances associated with ionization and excitation of $2p$ and $2s$ electrons. Calculations were performed to simulate the total absorption spectra. The theoretical results show very good agreement with the experimental data, if overall energy shifts of up to 2.5 eV are applied to the calculated resonance positions and assumptions are made about the initial experimental population of the various levels of the Fe$^{2+}$([Ar]$3d^6$) ground configuration. Furthermore, we performed extensive calculations of the Auger cascades that result when an electron is removed from the $2p$ subshell of Fe$^{2+}$. These computations lead to a better agreement with the measured product-charge-state distributions as compared to earlier work. We conclude that the $L$-shell absorption features of low-charged iron ions are useful for identifying gas-phase iron in the interstellar medium and for discriminating against the various forms of condensed-phase iron bound to composite interstellar dust grains.

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