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Single-photon double K-shell ionization of low-Z atoms

机译:低Z原子的单光子双k壳电离

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摘要

The photon energy dependence of the double K-shell ionization of light atoms is reported. Experimental double-to-single photoionization cross section ratios for Mg, Al, Si and Ca were obtained from measurements of high-resolution x-ray emission spectra. The double photoionization (DPI) cross-sections for K-shell hollow atom production are compared to convergent close-coupling calculations (CCC) for neutral atoms and He-like ions. The relative importance of the initial-state and final-state electron-electron interactions to the K-shell DPI in many-electron atoms and two-electron ions is addressed. Physical mechanisms and scaling laws of the K-shell double photoionization are examined. A semiempirical universal scaling of the DPI cross sections with the effective nuclear charge for neutral atoms 2 <= Z <= 47 is established.
机译:报道了光原子的双k壳电离的光子能量依赖性。从高分辨率X射线发射光谱的测量获得Mg,Al,Si和Ca的实验双对单次光相横截面比。将K-Shell中空原子产生的双光离心(DPI)横截面与中性原子和HE样离子的收敛近偶联计算(CCC)进行比较。解决了初始状态和最终电子 - 电子相互作用与许多电子原子和两电子离子的k-shell dpi相互作用的相对重要性。检查了K-Shell双光相消除的物理机制和缩放规律。建立了具有有效核电荷的DPI横截面的半透明通用缩放2 <= Z <= 47。

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