Petit Andrew S, Subotnik Joseph E
Department of Chemistry, University of Pennsylvania, 231 S. 34th Street, Philadelphia, Pennsylvania 19104, USA.
J Chem Phys. 2014 Jul 7;141(1):014107. doi: 10.1063/1.4884945.
In this paper, we develop a surface hopping approach for calculating linear absorption spectra using ensembles of classical trajectories propagated on both the ground and excited potential energy surfaces. We demonstrate that our method allows the dipole-dipole correlation function to be determined exactly for the model problem of two shifted, uncoupled harmonic potentials with the same harmonic frequency. For systems where nonadiabatic dynamics and electronic relaxation are present, preliminary results show that our method produces spectra in better agreement with the results of exact quantum dynamics calculations than spectra obtained using the standard ground-state Kubo formalism. As such, our proposed surface hopping approach should find immediate use for modeling condensed phase spectra, especially for expensive calculations using ab initio potential energy surfaces.
在本文中,我们开发了一种表面跳跃方法,用于使用在基态和激发态势能面上传播的经典轨迹系综来计算线性吸收光谱。我们证明,对于具有相同谐波频率的两个位移、未耦合谐波势的模型问题,我们的方法允许精确确定偶极 - 偶极相关函数。对于存在非绝热动力学和电子弛豫的系统,初步结果表明,与使用标准基态久保形式主义获得的光谱相比,我们的方法产生的光谱与精确量子动力学计算的结果更一致。因此,我们提出的表面跳跃方法应该立即用于凝聚相光谱建模,特别是对于使用从头算势能面的昂贵计算。