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首页> 外文期刊>The Journal of Chemical Physics >Calculation of absorption spectra for light-harvesting systems using non-Markovian approaches as well as modified Redfield theory
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Calculation of absorption spectra for light-harvesting systems using non-Markovian approaches as well as modified Redfield theory

机译:使用非马尔可夫方法和改进的Redfield理论计算光收集系统的吸收光谱

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摘要

For an ensemble of B850 rings of the light-harvesting system LH2 of purple bacteria the linear absorption spectrum is calculated. Using different Markovian and non-Markovian, time-dependent and time-independent methods based on second-order perturbation theory in the coupling between the excitonic system and its surrounding environment as well as the modified Redfield theory, the influence of the shape of the spectral density on the linear absorption spectrum is demonstrated for single samples and in the ensemble average. For long bath correlation times non-Markovian effects clearly show up in the static absorption line shapes. Among the different spectral densities studied is one of the purple bacterium Rhodospirillum molischianum obtained by a molecular-dynamics simulation earlier. The effect of static disorder on its line shapes in the ensemble average is analyzed and the results of the present calculations are compared to experimental data.
机译:对于紫色细菌光收集系统LH2的B850环的集合,计算了线性吸收光谱。在激子系统与周围环境之间的耦合以及修正的Redfield理论中,使用基于二阶微扰理论的时间依赖和时间独立的马尔可夫和非马尔可夫方法,以及改进的Redfield理论,线性吸收光谱上的密度在单个样品和整体平均值中得到了证明。对于较长的镀液相关时间,静态吸收线形状中会明显显示出非马尔可夫效应。在所研究的不同光谱密度中,有一种通过较早的分子动力学模拟获得的紫色细菌红景天菌。分析了静噪对其整体平均线形的影响,并将本计算结果与实验数据进行了比较。

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