Begušić Tomislav, Tao Xuecheng, Blake Geoffrey A, Miller Thomas F
Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, USA.
J Chem Phys. 2022 Apr 7;156(13):131102. doi: 10.1063/5.0087156.
Two-dimensional Raman and hybrid terahertz-Raman spectroscopic techniques provide invaluable insight into molecular structures and dynamics of condensed-phase systems. However, corroborating experimental results with theory is difficult due to the high computational cost of incorporating quantum-mechanical effects in the simulations. Here, we present the equilibrium-nonequilibrium ring-polymer molecular dynamics (RPMD), a practical computational method that can account for nuclear quantum effects on the two-time response function of nonlinear optical spectroscopy. Unlike a recently developed approach based on the double Kubo transformed (DKT) correlation function, our method is exact in the classical limit, where it reduces to the established equilibrium-nonequilibrium classical molecular dynamics method. Using benchmark model calculations, we demonstrate the advantages of the equilibrium-nonequilibrium RPMD over classical and DKT-based approaches. Importantly, its derivation, which is based on the nonequilibrium RPMD, obviates the need for identifying an appropriate Kubo transformed correlation function and paves the way for applying real-time path-integral techniques to multidimensional spectroscopy.
二维拉曼光谱和太赫兹-拉曼混合光谱技术为凝聚相系统的分子结构和动力学提供了宝贵的见解。然而,由于在模拟中纳入量子力学效应的计算成本很高,因此很难将实验结果与理论进行佐证。在此,我们提出了平衡-非平衡环聚合物分子动力学(RPMD),这是一种实用的计算方法,它可以考虑核量子效应在非线性光学光谱的双时响应函数上的影响。与最近基于双久保变换(DKT)相关函数开发的方法不同,我们的方法在经典极限下是精确的,在该极限下它简化为已确立的平衡-非平衡经典分子动力学方法。通过基准模型计算,我们展示了平衡-非平衡RPMD相对于经典方法和基于DKT的方法的优势。重要的是,其基于非平衡RPMD的推导避免了识别合适的久保变换相关函数的需要,并为将实时路径积分技术应用于多维光谱学铺平了道路。