Jang Seogjoo
Department of Chemistry and Biochemistry, Queens College of the City University of New York, 65-30 Kissena Boulevard, Flushing, New York 11367, USA.
J Chem Phys. 2007 Nov 7;127(17):174710. doi: 10.1063/1.2779031.
The Forster resonance energy transfer theory is generalized for inelastic situations with quantum mechanical modulation of the donor-acceptor coupling. Under the assumption that the modulations are independent of the electronic excitation of the donor and the acceptor, a general rate expression is derived, which involves two dimensional frequency-domain convolution of the donor emission line shape, the acceptor absorption line shape, and the spectral density of the modulation of the donor-acceptor coupling. For two models of modulation, detailed rate expressions are derived. The first model is the fluctuation of the donor-acceptor distance, approximated as a quantum harmonic oscillator coupled to a bath of other quantum harmonic oscillators. The distance fluctuation results in additional terms in the rate, which in the small fluctuation limit depend on the inverse eighth power of the donor-acceptor distance. The second model is the fluctuation of the torsional angle between the two transition dipoles, which is modeled as a quantum harmonic oscillator coupled to a bath of quantum harmonic oscillators and causes sinusoidal modulation of the donor-acceptor coupling. The rate expression has new elastic and inelastic terms, depending sensitively on the value of the minimum energy torsional angle. Experimental implications of the present theory and some of the open theoretical issues are discussed.
福斯特共振能量转移理论被推广到具有供体 - 受体耦合量子力学调制的非弹性情况。在调制与供体和受体的电子激发无关的假设下,推导了一个通用的速率表达式,该表达式涉及供体发射线形状、受体吸收线形状以及供体 - 受体耦合调制的谱密度的二维频域卷积。对于两种调制模型,推导了详细的速率表达式。第一个模型是供体 - 受体距离的波动,近似为一个耦合到其他量子谐振子浴的量子谐振子。距离波动导致速率中出现附加项,在小波动极限下,这些项取决于供体 - 受体距离的负八次方。第二个模型是两个跃迁偶极矩之间扭转角的波动,它被建模为一个耦合到量子谐振子浴的量子谐振子,并导致供体 - 受体耦合的正弦调制。速率表达式有新的弹性和非弹性项,敏感地取决于最小能量扭转角的值。讨论了本理论的实验意义和一些未解决的理论问题。