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Femtosecond spectroscopy of excitation energy transfer and initial charge separation in the reaction center of the photosynthetic bacterium Rhodopseudomonas viridis

机译:飞秒光谱在光合细菌绿假单胞菌反应中心的激发能转移和初始电荷分离

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摘要

Reaction centers from the photosynthetic bacterium Rhodopseudomonas viridis have been excited within the near-infrared absorption bands of the dimeric primary donor (P), of the “accessory” bacteriochlorophylls (B), and of the bacteriopheophytins (H) by using laser pulses of 150-fsec duration. The transfer of excitation energy between H, B, and P occurs in slightly less than 100 fsec and leads to the ultrafast formation of an excited state of P. This state is characterized by a broad absorption spectrum and exhibits stimulated emission. It decays in 2.8 ± 0.2 psec with the simultaneous oxidation of the primary donor and reduction of the bacteriopheophytin acceptor, which have been monitored at 545, 675, 815, 830, and 1310 nm. Although a transient bleaching relaxing in 400 ± 100 fsec is specifically observed upon excitation and observation in the 830-nm absorption band, we have found no indication that an accessory bacteriochlorophyll is involved as a resolvable intermediary acceptor in the primary electron transfer process.
机译:通过使用150激光脉冲,在二聚体主要供体(P),“附属”细菌叶绿素(B)和细菌脱镁叶绿素(H)的近红外吸收带内激发了光合细菌绿假单胞菌的反应中心。 -fsec持续时间。 H,B和P之间的激发能转移会在不到100 fsec的时间内发生,并导致P激发态的超快形成。该态的特征在于吸收光谱宽,并表现出受激发射。随着主要供体的同时氧化和噬菌素受体的还原,其衰减为2.8±0.2皮秒,已在545、675、815、830和1310 nm处进行了监测。尽管在激发和在830 nm吸收带中观察到的现象特别观察到在400±100 fsec处有短暂的漂白松弛,但我们没有发现在初级电子转移过程中辅助细菌叶绿素作为可解析的中间受体参与的迹象。

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