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首页> 外文期刊>The Journal of Chemical Physics >Forster resonance energy transfer, absorption and emission spectra in multichromophoric systems. II. Hybrid cumulant expansion
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Forster resonance energy transfer, absorption and emission spectra in multichromophoric systems. II. Hybrid cumulant expansion

机译:多发色体系中的Forster共振能量转移,吸收和发射光谱。二。混合累积量扩展

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We develop a hybrid cumulant expansion method to account for the system-bath entanglement in the emission spectrum in the multi-chromophoric Forster transfer rate. In traditional perturbative treatments, the emission spectrum is usually expanded with respect to the system-bath coupling term in both real and imaginary time. This perturbative treatment gives a reliable absorption spectrum, where the bath is Gaussian and only the real-time expansion is involved. For the emission spectrum, the initial state is an entangled state of the system plus bath. Traditional perturbative methods are problematic when the excitations are delocalized and the energy gap is larger than the thermal energy, since the second-order expansion cannot predict the displacement of the bath. In the present method, the real-time dynamics is carried out by using the 2nd-order cumulant expansion method, while the displacement of the bath is treated more accurately by utilizing the exact reduced density matrix of the system. In a sense, the hybrid cumulant expansion is based on a generalized version of linear response theory with entangled initial states. (c) 2015 AIP Publishing LLC.
机译:我们开发了一种混合累积量扩展方法,以解决多色发福斯特转移速率下发射光谱中的系统浴纠缠。在传统的扰动处理中,发射光谱通常相对于系统和浴场耦合时间在真实时间和假想时间内都得到扩展。这种扰动处理提供了可靠的吸收光谱,其中浴是高斯的,并且仅涉及实时扩展。对于发射光谱,初始状态是系统与镀液的纠缠状态。传统的摄动方法在激励被局域化并且能隙大于热能时会出现问题,因为二阶膨胀无法预测熔池的位移。在本方法中,实时动力学是通过使用二阶累积量膨胀方法进行的,而浴池的位移则通过利用系统的精确降低的密度矩阵进行了更精确的处理。从某种意义上说,混合累积量展开是基于具有初始状态纠缠的线性响应理论的广义形式。 (c)2015 AIP Publishing LLC。

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