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首页> 外文期刊>Physics Reports: A Review Section of Physics Letters (Section C) >Exciton-vibrational coupling in the dynamics and spectroscopy of Frenkel excitons in molecular aggregates
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Exciton-vibrational coupling in the dynamics and spectroscopy of Frenkel excitons in molecular aggregates

机译:分子聚集体中Frenkel激子的动力学和光谱中的激子-振动耦合

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The influence of exciton-vibrational coupling on the optical and transport properties of molecular aggregates is an old problem that gained renewed interest in recent years. On the experimental side, various nonlinear spectroscopic techniques gave insight into the dynamics of systems as complex as photosynthetic antennae. Striking evidence was gathered that in these protein-pigment complexes quantum coherence is operative even at room temperature conditions. Investigations were triggered to understand the role of vibrational degrees of freedom, beyond that of a heat bath characterized by thermal fluctuations. This development was paralleled by theory, where efficient methods emerged, which could provide the proper frame to perform non-Markovian and non-perturbative simulations of exciton-vibrational dynamics and spectroscopy. This review summarizes the state of affairs of the theory of exciton-vibrational interaction in molecular aggregates and photosynthetic antenna complexes. The focus is put on the discussion of basic effects of exciton-vibrational interaction from the stationary and dynamics points of view. Here, the molecular dimer plays a prominent role as it permits a systematic investigation of absorption and emission spectra by numerical diagonalization of the exciton-vibrational Hamiltonian in a truncated Hilbert space. An extension to larger aggregates, having many coupled nuclear degrees of freedom, becomes possible with the Multi-Layer Multi-Configuration Time-Dependent Hartree (ML-MCTDH) method for wave packet propagation. In fact it will be shown that this method allows one to approach the limit of almost continuous spectral densities, which is usually the realm of density matrix theory. Real system-bath situations are introduced for two models, which differ in the way strongly coupled nuclear coordinates are treated, as a part of the relevant system or the bath. A rather detailed exposition of the Hierarchy Equations Of Motion (HEOM) method will be given in terms of a stochastic decoupling ansatz. This method has become the standard in exciton-vibrational theory and illustrative examples will be presented as well as a comparison with ML-MCTDH. Applications will be shown for generic model systems as well as for small aggregates mimicking those formed by perylene bisimide dyes. Further, photosynthetic antenna complexes will be discussed, including spectral densities and the role of exciton-vibrational coupling in two-dimensional electronic spectroscopy. (C) 2014 Elsevier B.V. All rights reserved.
机译:激子-振动耦合对分子聚集体的光学和输运性质的影响是一个古老的问题,近年来引起了新的兴趣。在实验方面,各种非线性光谱技术使人们深入了解了像光合天线一样复杂的系统动力学。令人惊讶的证据表明,即使在室温条件下,在这些蛋白质-颜料复合物中,量子相干性仍然有效。触发了调查以了解振动自由度的作用,而不是以热波动为特征的热浴。这种发展与理论并行,那里出现了有效的方法,可以为执行激子振动动力学和光谱学的非马尔可夫和非摄动模拟提供适当的框架。这篇综述总结了分子聚集体和光合天线复合体中激子-振动相互作用理论的发展状况。从静力学和动力学的观点出发,重点讨论激子-振动相互作用的基本作用。在这里,分子二聚体发挥了重要作用,因为它允许在截短的希尔伯特空间中通过激子振动哈密顿量的数字对角化来系统地研究吸收和发射光谱。利用多层多配置时变哈特里(ML-MCTDH)方法扩展波包传播,可以扩展到具有许多耦合核自由度的较大集合体。实际上,将证明该方法允许接近接近连续光谱密度的极限,这通常是密度矩阵理论的领域。介绍了两种模型的实际系统浴情况,它们在相关系统或浴的一部分中的区别在于处理强耦合核坐标的方式不同。将根据随机解耦ansatz给出运动层次方程(HEOM)方法的相当详细的说明。该方法已成为激子振动理论的标准方法,将给出说明性示例,并与ML-MCTDH进行比较。将展示其在通用模型系统以及模仿per双酰亚胺染料形成的小聚集体中的应用。此外,将讨论光合天线复合体,包括光谱密度以及激子-振动耦合在二维电子光谱学中的作用。 (C)2014 Elsevier B.V.保留所有权利。

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