Aghtar Mortaza, Kleinekathöfer Ulrich, Curutchet Carles, Mennucci Benedetta
Department of Physics and Earth Sciences, Jacobs University Bremen , Campus Ring 1, 28759 Bremen, Germany.
Departament de Farmàcia i Tecnologia Farmacèutica i Fisicoquímica and Institut de Biomedicina (IBUB), Facultat de Farmàcia, Universitat de Barcelona , Av. Joan XXIII s/n, 08028 Barcelona, Spain.
J Phys Chem B. 2017 Feb 16;121(6):1330-1339. doi: 10.1021/acs.jpcb.6b10772. Epub 2017 Feb 3.
Temperature-dependent fluctuations of both site energies and electronic couplings are known to affect the excitation energy transfer in light-harvesting complexes. Environment effects on such fluctuations as well as possible spatial correlations among them are investigated here in the PE545 complex from cryptophyte algae using ensemble-averaged wave packet dynamics to extract the exciton dynamics. This strategy directly uses the time-dependent fluctuations of the system Hamiltonian, as described by quantum mechanics/molecular mechanics calculations performed along a classical MD trajectory. Neither the fluctuations in the couplings nor spatial correlations including cross-correlations between site energies and couplings are found to be important in the exciton dynamics of the complex. This finding does not change if a polarizable embedding is used instead of its electrostatic counterpart. The impact of variations in spectral densities and screening of excitonic couplings based on the electrostatic and polarizable embeddings are discussed as well.
已知位点能量和电子耦合的温度依赖性波动会影响光捕获复合物中的激发能量转移。本文利用系综平均波包动力学研究了环境对这种波动的影响以及它们之间可能的空间相关性,以提取PE545复合物(来自隐藻)中的激子动力学。该策略直接使用系统哈密顿量的时间依赖性波动,这是通过沿经典分子动力学轨迹进行的量子力学/分子力学计算来描述的。在该复合物的激子动力学中,耦合的波动以及包括位点能量与耦合之间的交叉相关性在内的空间相关性均未被发现是重要的。如果使用可极化嵌入而不是其静电对应物,这一发现不会改变。还讨论了基于静电和可极化嵌入的光谱密度变化和激子耦合屏蔽的影响。