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Analysis of picosecond laser induced fluorescence phenomena in photosynthetic membranes utilizing a master equation approach.

机译:利用主方程法分析皮秒激光在光合膜中诱导的荧光现象。

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摘要

A Pauli master equation is formulated and solved to describe the fluorescence quantum yield, phi, and the fluorescence temporal decay curves. F(t), obtained in picosecond laser excitation experiments of photosynthetic systems. It is assumed that the lowering of phi with increasing pulse intensity is due to bimolecular singlet exciton annihilation processes which compete with the monomolecular exciton decay processes; Poisson statistics are taken into account. Calculated curves of phi as a function of the number of photon hits per domain are compared with experimental data, and it is concluded that these domains contain at least two to four connected photosynthetic units (depending on the temperature), where each photosynthetic unit is assumed to contain approximately 300 pigment molecules. It is shown that under conditions of high excitation intensities, the fluorescence decays approximately according to the (time)1/2 law.
机译:制定并求解了Pauli主方程,以描述荧光量子产率phi和荧光时间衰减曲线。 F(t),在光合作用系统的皮秒激光激发实验中获得。假定随着脉冲强度的增加,phi的降低是由于双分子单重态激子an灭过程与单分子激子衰变过程竞争所致。考虑了泊松统计。将phi计算的随每个域光子命中次数变化的曲线与实验数据进行比较,得出的结论是,这些域包含至少2-4个相连的光合作用单元(取决于温度),其中假设每个光合作用单元包含大约300个颜料分子。结果表明,在高激发强度的条件下,荧光大约按照(时间)1/2定律衰减。

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