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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Relativistic effects in photoionization time delay near the Cooper minimum of noble-gas atoms
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Relativistic effects in photoionization time delay near the Cooper minimum of noble-gas atoms

机译:接近稀有气体原子Cooper最小值的光电离时间延迟的相对论效应

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摘要

Time delay of photoemission from valence ns, np(3/2), and np(1/2) subshells of noble-gas atoms is theoretically scrutinized within the framework of the dipole relativistic random phase approximation. The focus is on the variation of time delay in the vicinity of the Cooper minima in photoionization of the outer subshells of neon, argon, krypton, and xenon, where the corresponding dipole matrix element changes its sign while passing through a node. It is revealed that the presence of the Cooper minimum in one photoionization channel has a strong effect on time delay in other channels. This is shown to be due to interchannel coupling.
机译:理论上在偶极相对论随机相位近似的框架内研究稀有气体原子的价ns,np(3/2)和np(1/2)子壳的光发射时间延迟。重点是对氖,氩、,和氙的外部子壳进行光电离时,Cooper极小值附近的时间延迟变化,其中相应的偶极矩阵元素在通过节点时会改变其符号。揭示了一个光电离通道中Cooper最小值的存在对其他通道中的时间延迟有很强的影响。示出这是由于通道间耦合引起的。

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