Quantum Control of Molecular Ionization Process by Phase-controlled Laser Fields

H. Ohmura
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Abstract

Intense (1012-1013 W/cm2) phase-controlled laser fields consisting of a fundamental light and a second-harmonic light induce the directionally asymmetric tunneling ionization and the resultant orientation-selective molecular ionization. It is demonstrated that orientation-selective molecular ionization induced by phase-controlled ω + 2ω laser fields reflects the geometric structure of the highest occupied molecular orbital. This method was robust, being free of both laser wavelength and pulse-duration constraints, and thus can be applied to a wide range of molecules.
相位控制激光场对分子电离过程的量子控制
由基光和次谐波光组成的强(1012 ~ 1013 W/cm2)相控激光场可诱导定向非对称隧穿电离和定向选择性分子电离。结果表明,相位控制的ω + 2ω激光场诱导的取向选择性分子电离反应了分子最高占据轨道的几何结构。该方法具有鲁棒性,不受激光波长和脉冲持续时间的限制,因此可以应用于广泛的分子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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