Song Kai, Bai Shuming, Shi Qiang
Beijing National Laboratory for Molecular Sciences, State Key Laboratory for Structural Chemistry of Unstable and Stable Species, Institute of Chemistry, Chinese Academy of Sciences, Zhongguancun, Beijing 100190, China.
J Chem Phys. 2015 Aug 14;143(6):064109. doi: 10.1063/1.4928584.
The hierarchical equations of motion (HEOM) method has recently emerged as an effective approach to simulate linear and nonlinear spectroscopic signals of molecular aggregates in the intermediate coupling regime. However, its application to large systems is still limited when there are a large number of molecules in the molecular aggregate. In this work, we propose a time domain two-particle approximation (TPA) in combination with the HEOM method to calculate the absorption and circular dichroism line shapes of molecular aggregates. The new method is shown to reduce the number of auxiliary density operators (ADOs) significantly for large systems, and a further truncation of the two-bath-set excited terms based on geometric considerations can lead to a linear increase of the number of ADOs with the system size. The validity of the HEOM-TPA method is first tested on one-dimensional model systems. The new method is then applied to calculate the absorption and circular dichroism line shapes of the Photosystem I core complex, as well as the population evolution of the Fenna-Matthews-Olson complex to demonstrate its effectiveness.
分层运动方程(HEOM)方法最近已成为一种有效的方法,用于模拟中间耦合 regime 中分子聚集体的线性和非线性光谱信号。然而,当分子聚集体中有大量分子时,其在大型系统中的应用仍然有限。在这项工作中,我们提出了一种时域双粒子近似(TPA)与HEOM方法相结合的方法,以计算分子聚集体的吸收和圆二色性线形。新方法被证明可以显著减少大型系统中辅助密度算符(ADO)的数量,并且基于几何考虑对双浴集激发项进行进一步截断可以导致ADO数量随系统大小呈线性增加。首先在一维模型系统上测试了HEOM-TPA方法的有效性。然后将新方法应用于计算光系统I核心复合物的吸收和圆二色性线形,以及费纳-马修斯-奥尔森复合物的布居演化,以证明其有效性。