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二维振动电子谱与半经典力学。

Two-dimensional vibrational-electronic spectra with semiclassical mechanics.

机构信息

Department of Chemistry and Chemical Biology, Baker Laboratory, Cornell University, Ithaca, New York 14853, USA.

出版信息

J Chem Phys. 2021 May 21;154(19):194110. doi: 10.1063/5.0051667.

Abstract

Two-dimensional vibrational-electronic (2DVE) spectra probe the effects on vibronic spectra of initial vibrational excitation in an electronic ground state. The optimized mean trajectory (OMT) approximation is a semiclassical method for computing nonlinear spectra from response functions. Ensembles of classical trajectories are subject to semiclassical quantization conditions, with the radiation-matter interaction inducing discontinuous transitions. This approach has been previously applied to two-dimensional infrared and electronic spectra and is extended here to 2DVE spectra. For a system including excitonic coupling, vibronic coupling, and interaction of a chromophore vibration with a resonant environment, the OMT method is shown to well approximate exact quantum dynamics.

摘要

二维振动电子(2DVE)光谱探测初始电子基态振动激发对振子光谱的影响。优化平均轨迹(OMT)近似是从响应函数计算非线性光谱的半经典方法。经典轨迹的集合服从半经典量子化条件,辐射与物质的相互作用引起不连续跃迁。该方法之前已应用于二维红外和电子光谱,并扩展到 2DVE 光谱。对于包含激子耦合、振子耦合以及发色团振动与共振环境相互作用的系统,OMT 方法很好地近似了精确的量子动力学。

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