Ertel Dominik, Busto David, Makos Ioannis, Schmoll Marvin, Benda Jakub, Bragheri Francesca, Osellame Roberto, Lindroth Eva, Patchkovskii Serguei, Mašín Zdeněk, Sansone Giuseppe
Physikalisches Institut, Albert-Ludwigs-Universität Freiburg, Hermann-Herder-Straße 3, 79104 Freiburg, Germany.
Department of Physics, Lund University, P.O. Box 118, SE-221 00 Lund, Sweden.
J Phys Chem A. 2024 Mar 7;128(9):1685-1697. doi: 10.1021/acs.jpca.3c06759. Epub 2024 Feb 23.
We present combined theoretical and experimental work investigating the angle-resolved phases of the photoionization process driven by a two-color field consisting of an attosecond pulse train and an infrared pulse in an ensemble of randomly oriented molecules. We derive a general form for the two-color photoelectron (and time-delay) angular distribution valid also in the case of chiral molecules and when relative polarizations of the photons contributing to the attosecond photoelectron interferometer differ. We show a comparison between the experimental data and theoretical predictions in an ensemble of methane and deuteromethane molecules, discussing the effect of nuclear dynamics on the photoionization phases. Finally, we demonstrate that the oscillating component and the phase of the two-color signal can be fitted by using complex asymmetry parameters, in perfect analogy to the atomic case.
我们展示了结合理论和实验的工作,研究了由阿秒脉冲序列和红外脉冲组成的双色场驱动的光离化过程在随机取向分子系综中的角分辨相位。我们推导了双色光电子(和时间延迟)角分布的一般形式,该形式在手性分子的情况下以及对阿秒光电子干涉仪有贡献的光子的相对偏振不同时也有效。我们展示了甲烷和氘代甲烷分子系综中实验数据与理论预测之间的比较,讨论了核动力学对光离化相位的影响。最后,我们证明双色信号的振荡分量和相位可以通过使用复不对称参数来拟合,这与原子情况完全类似。