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分子聚集体吸收光谱的模拟:随机纯态方法的层次结构。

Simulation of absorption spectra of molecular aggregates: A hierarchy of stochastic pure state approach.

作者信息

Chen Lipeng, Bennett Doran I G, Eisfeld Alexander

机构信息

Max Planck Institute for the Physics of Complex Systems, Nöthnitzer Str. 38, Dresden, Germany.

Department of Chemistry, Southern Methodist University, P.O. Box 750314, Dallas, Texas 75205, USA.

出版信息

J Chem Phys. 2022 Mar 28;156(12):124109. doi: 10.1063/5.0078435.

Abstract

Simulation of spectroscopic observables for molecular aggregates with strong and structured coupling of electronic excitation to vibrational degrees of freedom is an important but challenging task. The Hierarchy of Pure States (HOPS) provides a formally exact solution based on local, stochastic trajectories. Exploiting the localization of HOPS for the simulation of absorption spectra in large aggregates requires a formulation in terms of normalized trajectories. Here, we provide a normalized dyadic equation where the ket- and bra-states are propagated in different electronic Hilbert spaces. This work opens the door to applying adaptive HOPS methods for the simulation of absorption spectra.

摘要

对电子激发与振动自由度具有强耦合和结构化耦合的分子聚集体的光谱可观测量进行模拟是一项重要但具有挑战性的任务。纯态层次结构(HOPS)基于局部随机轨迹提供了一种形式上精确的解决方案。利用HOPS的局域性来模拟大聚集体中的吸收光谱需要用归一化轨迹来表述。在这里,我们提供了一个归一化的二元方程,其中ket态和bra态在不同的电子希尔伯特空间中传播。这项工作为应用自适应HOPS方法模拟吸收光谱打开了大门。

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