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用于激子解离非绝热动力学的矩阵乘积态方法与多组态含时Hartree方法的比较

Comparison of Matrix Product State and Multiconfiguration Time-Dependent Hartree Methods for Nonadiabatic Dynamics of Exciton Dissociation.

作者信息

Dorfner Maximilian F X, Brey Dominik, Burghardt Irene, Ortmann Frank

机构信息

TUM School of Natural Sciences, Technische Universität München, 85748 Garching bei München, Germany.

Institut für Physikalische und Theoretische Chemie, Goethe Universität Frankfurt, 60438 Frankfurt am Main, Germany.

出版信息

J Chem Theory Comput. 2024 Oct 22;20(20):8767-8781. doi: 10.1021/acs.jctc.4c00751. Epub 2024 Oct 4.

Abstract

The excited-state dynamics of organic molecules, molecular aggregates, and donor-acceptor clusters is typically governed by the interplay of electronic excitations and, due to their flexibility and soft bonding, by the interaction with their vibrations. This interaction in these systems can be characterized by a few relevant electronic states that are coupled to numerous vibrational normal modes, encompassing a vast configurational space of the molecules. The full quantum simulation of these type of systems has been long dominated by the multiconfiguration time-dependent Hartree (MCTDH) approach and its multilayer variants, which are considered the gold standard in the presence of electron-vibration coupling with a large number of modes. Recently, also the matrix product state ansatz (MPS) with appropriate time-evolution schemes has been applied to these types of Hamiltonians. In this article, we provide a numerical comparison of excited-state dynamics between the MCTDH and MPS approaches for two electron-vibration coupled systems. Notably, we consider two models for exciton dissociation at a P3HT:PCBM heterojunction, comprising two electronic states and 100 vibrational modes, and 26 electronic states and 113 vibrational modes, respectively. While both methods agree very well for the first model, more pronounced deviations are found for the second model. We trace back the divergence between the methods to the different way entanglement is treated.

摘要

有机分子、分子聚集体和供体-受体簇的激发态动力学通常由电子激发的相互作用决定,并且由于它们的灵活性和弱键合,还受到与振动相互作用的影响。这些系统中的这种相互作用可以由一些相关的电子态来表征,这些电子态与众多的振动简正模式耦合,涵盖了分子的巨大构型空间。这类系统的全量子模拟长期以来一直由多组态含时 Hartree(MCTDH)方法及其多层变体主导,在存在大量模式的电子-振动耦合情况下,它们被视为金标准。最近,具有适当时间演化方案的矩阵乘积态假设(MPS)也已应用于这类哈密顿量。在本文中,我们对两个电子-振动耦合系统的 MCTDH 和 MPS 方法之间的激发态动力学进行了数值比较。值得注意的是,我们考虑了两种用于 P3HT:PCBM 异质结处激子解离的模型,分别包含两个电子态和 100 个振动模式,以及 26 个电子态和 113 个振动模式。虽然两种方法对于第一个模型的结果非常吻合,但对于第二个模型发现了更明显的偏差。我们将方法之间的差异追溯到处理纠缠的不同方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dce7/11500411/ec168b6202a3/ct4c00751_0001.jpg

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