论文标题

来自时间依赖性多探针自我一致的场模拟的光电离路幅度和相的干涉测量学提取

Interferometric extraction of photoionization-path amplitudes and phases from time-dependent multiconfiguration self-consistent-field simulations

论文作者

Orimo, Yuki, Tugs, Oyunbileg, Sato, Takeshi, You, Daehyun, Ueda, Kiyoshi, Ishikawa, Kenichi L.

论文摘要

来自种子的自由电子激光器的双重极端脉冲脉冲使我们能够测量光电角分布(PAD)作为不同波长成分之间相对相的函数。时间依赖性的多晶型自符势场(TD-MCSCF)方法是强大的多电体计算方法,可以准确地从第一个原理中模拟此类光电报动力学。在这里,我们提出了一种评估每个电离路径幅度和相位的方法,该方法使用TD-MCSCF仿真结果完全决定了光电离过程。这个想法是利用TD-MCSCF计算方位角和磁性角动量(L,M)和M分辨垫指定的部分波幅度的能力。电离路径的相位以及导致相同(L,M)的路径的振幅是通过将不对称参数表达与计算出的M分解垫的全局拟合获得的,这取决于双裂体场的相对相。我们将目前的方法应用于NE的电离NE通过组合的基本和第二谐波XUV脉冲,表明提取的振幅和相位可以很好地再现不对称参数。

Bichromatic extreme-ultraviolet pulses from a seeded free-electron laser enable us to measure photoelectron angular distribution (PAD) as a function of the relative phase between the different wavelength components. The time-dependent multiconfiguration self-consistent-field (TD-MCSCF) methods are powerful multielectron computation methods to accurately simulate such photoionization dynamics from the first principles. Here we propose a method to evaluate the amplitude and phase of each ionization path, which completely determines the photoionization processes, using TD-MCSCF simulation results. The idea is to exploit the capability of TD-MCSCF to calculate the partial wave amplitudes specified by the azimuthal and magnetic angular momenta (l,m) and the m-resolved PAD. The phases of the ionization paths as well as the amplitudes of the paths resulting in the same (l,m) are obtained through global fitting of the expression of the asymmetry parameters to the calculated m-resolved PAD, which depends on the relative phase of the bichromatic field. We apply the present method to ionization of Ne by combined fundamental and second-harmonic XUV pulses, demonstrating that the extracted amplitudes and phases excellently reproduce the asymmetry parameters.

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