On-the-fly simulation of time-resolved fluorescence spectra and anisotropy

Author:

Xu Chao1ORCID,Lin Congru1,Peng Jiawei1ORCID,Zhang Juanjuan1,Lin Shichen2,Gu Feng Long1ORCID,Gelin Maxim F.3ORCID,Lan Zhenggang1ORCID

Affiliation:

1. Key Laboratory of Theoretical Chemistry of Environment, Ministry of Education and Guangdong Provincial Key Laboratory of Chemical Pollution and Environmental Safety; School of Environment, South China Normal University 1 , Guangzhou 510006, People’s Republic of China

2. Interdisciplinary Graduate School of Engineering Sciences, Kyushu University 2 , 6-1 Kasuga-Park, Fukuoka 816-8580, Japan

3. School of Science, Hangzhou Dianzi University 3 , Hangzhou 310018, People’s Republic of China

Abstract

We combine on-the-fly trajectory surface hopping simulations and the doorway–window representation of nonlinear optical response functions to create an efficient protocol for the evaluation of time- and frequency-resolved fluorescence (TFRF) spectra and anisotropies of the realistic polyatomic systems. This approach gives the effective description of the proper (e.g., experimental) pulse envelopes, laser field polarizations, and the proper orientational averaging of TFRF signals directly from the well-established on-the-fly nonadiabatic dynamic simulations without extra computational cost. To discuss the implementation details of the developed protocol, we chose cis-azobenzene as a prototype to simulate the time evolution of the TFRF spectra governed by its nonadiabatic dynamics. The results show that the TFRF is determined by the interplay of several key factors, i.e., decays of excited-state populations, evolution of the transition dipole moments along with the dynamic propagation, and scaling factor of the TFRF signals associated with the cube of emission frequency. This work not only provides an efficient and effective approach to simulate the TFRF and anisotropies of realistic polyatomic systems but also discusses the important relationship between the TFRF signals and the underlining nonadiabatic dynamics.

Funder

National Natural Science Foundation of China

2024 Guangzhou Basic and Applied Basic Research Topic

Opening Project of Key Laboratory of Optoelectronic Chemical Materials and Devices of Ministry of Education, Jianghan University

Publisher

AIP Publishing

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. On-the-Fly Simulation of Two-Dimensional Fluorescence–Excitation Spectra;The Journal of Physical Chemistry Letters;2024-08-20

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