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从头算模拟多原子生色团的二维电子信号的峰演化和拍频图。

Ab initio simulation of peak evolutions and beating maps for electronic two-dimensional signals of a polyatomic chromophore.

机构信息

School of Sciences, Hangzhou Dianzi University, Hangzhou 310018, China.

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

出版信息

J Chem Phys. 2023 May 21;158(19). doi: 10.1063/5.0150387.

Abstract

By employing the doorway-window (DW) on-the-fly simulation protocol, we performed ab initio simulations of peak evolutions and beating maps of electronic two-dimensional (2D) spectra of a polyatomic molecule in the gas phase. As the system under study, we chose pyrazine, which is a paradigmatic example of photodynamics dominated by conical intersections (CIs). From the technical perspective, we demonstrate that the DW protocol is a numerically efficient methodology suitable for simulations of 2D spectra for a wide range of excitation/detection frequencies and population times. From the information content perspective, we show that peak evolutions and beating maps not only reveal timescales of transitions through CIs but also pinpoint the most relevant coupling and tuning modes active at these CIs.

摘要

通过采用门窗口(DW)在线模拟协议,我们对气相中多原子分子的电子二维(2D)光谱的峰值演化和拍频图进行了从头算模拟。作为研究对象,我们选择了吡嗪,它是由锥交叉(CI)主导的光动力学的典型例子。从技术角度来看,我们证明 DW 协议是一种数值高效的方法,适用于各种激发/探测频率和布居时间的 2D 光谱模拟。从信息内容的角度来看,我们表明,峰演化和拍频图不仅揭示了通过 CI 的跃迁的时间尺度,而且还确定了在这些 CI 处起作用的最相关的耦合和调谐模式。

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