氖原子的阿秒干涉测量:光电子角分布

Yudin S. N., Popova M. M., Gryzlova E. V., Kiselev M. D., Grum–Grzhimailo A. N.
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引用次数: 0

摘要

本文给出了在几个倍频场作用下氖原子电离过程中光电子的角分布。所考虑的设置被称为RABBITT(重建阿秒跳动的干涉双光子跃迁)光谱,条件是选择的场频率使通过离散态的共振跃迁发挥重要作用。分析了种子红外场相位对发射角分布的影响。在近阈值边带的各向异性参数的显著差异是由通过离散状态的跃迁引起的。比较了连续介质离散法和三阶摄动法两种速率方程的数值求解方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Attosecond interferometry of neon atom: photoelectron angular distributions
In the paper we present the angular distributions of photoelectrons in ionization of neon atom by a field of several multiple frequencies. The considered setup is refered to the RABBITT (Reconstruction of Attosecond Beating By Interference of Two-photon Transitions) spectroscopy under condition that the field frequencies are selected in such a way that resonant transitions through discrete states play an important role. The role of the phase of the seed infrared field on the angular distributions of photoemission is analyzed. A significant difference in the anisotropy parameters at the near-threshold sideband caused by transitions through discrete states is shown. Two methods are compared: numerical solution of rate equations with continuum discretization and third-order perturbation theory.
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