论文标题
XE 4D光电离的Attsond Electron-spin动力学
Attosecond electron-spin dynamics in Xe 4d photoionization
论文作者
论文摘要
70-100 eV范围内的氙原原子的光离子揭示了几种引人入胜的物理现象,例如光子吸收后电子云的动态重排引起的巨大共鸣,这是中间XE $^+$之间的异常分支比例,该分支比例由Spin-Orbit互动互动和多个增强器deAge deay Crocess分离。过去已经研究了这些现象,该现象使用了特别的同步辐射,但没有实时动力学。在这里,我们研究了XE 4D光电离的动力学在其自然时间尺度上结合了Attosond干涉仪和重合光谱的动力学。对所涉及的过渡的时频分析使我们能够识别两个干扰电离机制:较大的巨型偶极子共振,快速衰减时间小于50 AS AS,并且在阈值时通过自旋纤利过渡引起的狭窄共振,其衰减时间更长。我们的结果为光诱导现象的复杂电子旋转动力学提供了新的见解。
The photoionization of xenon atoms in the 70-100 eV range reveals several fascinating physical phenomena such as a giant resonance induced by the dynamic rearrangement of the electron cloud after photon absorption, an anomalous branching ratio between intermediate Xe$^+$ states separated by the spin-orbit interaction and multiple Auger decay processes. These phenomena have been studied in the past, using in particular synchrotron radiation, but without access to real-time dynamics. Here, we study the dynamics of Xe 4d photoionization on its natural time scale combining attosecond interferometry and coincidence spectroscopy. A time-frequency analysis of the involved transitions allows us to identify two interfering ionization mechanisms: the broad giant dipole resonance with a fast decay time less than 50 as and a narrow resonance at threshold induced by spin-flip transitions, with much longer decay times of several hundred as. Our results provide new insight into the complex electron-spin dynamics of photo-induced phenomena.