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吡嗪飞秒时间分辨二维电子光谱的从头算准经典模拟

Ab Initio Quasiclassical Simulation of Femtosecond Time-Resolved Two-Dimensional Electronic Spectra of Pyrazine.

作者信息

Huang Xiang, Xie Weiwei, Došlić Nađa, Gelin Maxim F, Domcke Wolfgang

机构信息

Department of Chemistry, Technical University of Munich, Garching, D-85747, Germany.

Institute of Physical Chemistry, Karlsruhe Institute of Technology, Karlsruhe, 76131, Germany.

出版信息

J Phys Chem Lett. 2021 Dec 9;12(48):11736-11744. doi: 10.1021/acs.jpclett.1c03589. Epub 2021 Dec 1.

Abstract

Two-dimensional (2D) electronic spectroscopy is a powerful nonlinear technique which provides spectroscopic information on two frequency axes as well as dynamical information as a function of the so-called waiting time. Herein, an ab initio theoretical framework for the simulation of electronic 2D spectra has been developed. The method is based on the classical approximation to the doorway-window representation of three-pulse photon-echo signals and the description of nuclear motion by classical trajectories. Nonadiabatic effects are taken into account by a trajectory surface-hopping algorithm. 2D electronic spectra were simulated with ab initio on-the-fly trajectory calculations using the ADC(2) electronic-structure method for the pyrazine molecule, which is a benchmark system for ultrafast radiationless decay through conical intersections. It is demonstrated that 2D spectroscopy with subfemtosecond UV pulses can provide unprecedented detailed information on the ultrafast photodynamics of polyatomic molecules.

摘要

二维(2D)电子光谱是一种强大的非线性技术,它能在两个频率轴上提供光谱信息,并作为所谓等待时间的函数提供动力学信息。在此,已开发出一种用于模拟电子二维光谱的从头算理论框架。该方法基于对三脉冲光子回波信号的门道 - 窗口表示的经典近似以及用经典轨迹描述核运动。非绝热效应通过轨迹表面跳跃算法来考虑。使用ADC(2)电子结构方法对吡嗪分子进行从头算即时轨迹计算,模拟了二维电子光谱,吡嗪分子是通过锥形交叉进行超快无辐射衰变的基准系统。结果表明,使用亚飞秒紫外脉冲的二维光谱能够提供关于多原子分子超快光动力学的前所未有的详细信息。

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