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Photoelectron Spectroscopy and the Dipole Approximation

机译:光电子能谱和偶极近似

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Over the past three decades, the dipole approximation has facilitated a basic understanding of the photoionization process in atoms and molecules. Advances in gas-phase photoemission experiments using synchrotron radiation have recently highlighted nondipole effects at relatively low photon energies while probing the limits of the dipole approximation. Breakdowns in this approximation are manifested primarily as deviations from dipolar angular distributions of photoelectrons. Detailed new results demonstrate nondipolar angular-distribution effects are easily observable in atomic gases at energies well below 1 keV, and, in molecules, a previously unexpected phenomenon greatly enhances the breakdown of the dipole approximation just above the core-level ionization threshold.
机译:在过去的三十年中,偶极近似促进了对原子和分子中光电离过程的基本理解。使用同步加速器辐射的气相光发射实验的最新进展近来突出了在探测偶极近似极限的同时,在相对较低的光子能量下的非偶极效应。该近似值的下降主要表现为与光电子的偶极角分布的偏差。详细的新结果表明,在远低于1 keV的能量下,原子气体中的非偶极角分布效应很容易观察到,并且在分子中,以前未曾预料到的现象大大增强了偶极近似的击穿,刚好高于核能级电离阈值。

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