Ma Jian, Cao Jianshu
Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
J Chem Phys. 2015 Mar 7;142(9):094106. doi: 10.1063/1.4908599.
We study the Förster resonant energy transfer rate, absorption and emission spectra in multichromophoric systems. The multichromophoric Förster theory (MCFT) is determined from an overlap integral of generalized matrices related to the donor's emission and acceptor's absorption spectra, which are obtained via a full 2nd-order cumulant expansion technique developed in this work. We calculate the spectra and MCFT rate for both localized and delocalized systems, and calibrate the analytical 2nd-order cumulant expansion with the exact stochastic path integral method. We present three essential findings: (i) The role of the initial entanglement between the donor and its bath is found to be crucial in both the emission spectrum and the MCFT rate. (ii) The absorption spectra obtained by the cumulant expansion method are nearly identical to the exact spectra for both localized and delocalized systems, even when the system-bath coupling is far from the perturbative regime. (iii) For the emission spectra, the cumulant expansion can give reliable results for localized systems, but fail to provide reliable spectra of the high-lying excited states of a delocalized system, when the system-bath coupling is large and the thermal energy is small. This paper also provides a simple golden-rule derivation of the MCFT, reviews existing methods, and motivates further developments in the subsequent papers.
我们研究了多发色团体系中的福斯特共振能量转移速率、吸收光谱和发射光谱。多发色团福斯特理论(MCFT)由与供体发射光谱和受体吸收光谱相关的广义矩阵的重叠积分确定,这些光谱通过本文开发的全二阶累积量展开技术获得。我们计算了局域化和离域化体系的光谱和MCFT速率,并用精确的随机路径积分方法校准了二阶累积量展开的解析结果。我们给出了三个重要发现:(i)发现供体与其浴之间的初始纠缠在发射光谱和MCFT速率中都起着关键作用。(ii)对于局域化和离域化体系,通过累积量展开方法获得的吸收光谱与精确光谱几乎相同,即使体系-浴耦合远非微扰区域。(iii)对于发射光谱,当体系-浴耦合较大且热能较小时,累积量展开可以给出局域化体系的可靠结果,但无法提供离域化体系高能激发态的可靠光谱。本文还给出了MCFT的一个简单黄金规则推导,回顾了现有方法,并为后续论文的进一步发展提供了动力。