Pearlstein Robert M
Physics Department, Indiana University-Purdue University at Indianapolis, Indianapolis, IN, 46202-3723, USA,
Photosynth Res. 2002;73(1-3):119-26. doi: 10.1023/A:1020401820196.
Theoretical developments in the 1960s concerning the migration of chlorophyll electronic excitation energy through a photosynthetic core antenna to a reaction center are reviewed in three parts. These include the first theory paper whose calculated results were consistent with experiment, the first analytic determination of the mean number of steps in the two-dimensional random walk of a dephased exciton to reach the reaction center, and the first theoretical description of the possible effects of true collective excited states (Frenkel excitons) on the rate of trap-limited migration and trapping. The possible relevance of these developments, particularly the last, to current photosynthesis research is briefly discussed.
本文分三个部分回顾了20世纪60年代关于叶绿素电子激发能通过光合核心天线迁移至反应中心的理论进展。其中包括第一篇计算结果与实验相符的理论论文、对失相激子二维随机游走到达反应中心的平均步数的首次解析测定,以及对真实集体激发态(弗伦克尔激子)对陷阱限制迁移和俘获速率可能产生的影响的首次理论描述。本文还简要讨论了这些进展,特别是最后一项进展与当前光合作用研究的可能相关性。