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光合海洋藻类捕光复合物中的相干电子振动耦合

Coherent Vibronic Coupling in Light-Harvesting Complexes from Photosynthetic Marine Algae.

作者信息

Richards G H, Wilk K E, Curmi P M G, Quiney H M, Davis J A

机构信息

School of Physics and Centre for Applied Medical Research, St. Vincents Hospital, The University of New South Wales , Sydney, New South Wales 2052, Australia.

School of Physics and ARC Centre of Excellence for Coherent X-Ray Science, The University of Melbourne , Victoria 3010, Australia.

出版信息

J Phys Chem Lett. 2012 Jan 19;3(2):272-7. doi: 10.1021/jz201600f. Epub 2012 Jan 10.

Abstract

Observations of long-lived coherences in photosynthetic light-harvesting complexes utilize short pulses with broad spectral bandwidths to coherently excite multiple transitions and coherent superpositions. In order to identify the role that such quantum effects might play in efficient energy transfer, however, an alternative approach is required. We have developed a technique for two-color photon echo spectroscopy to selectively excite the pathway of interest and measure its evolution in the absence of any other excitation. We use this technique to excite a coherence pathway in phycocyanin-645 from cryptophyte algae and measure the dynamics of this coherence. A decoherence time of 500 fs was measured, and clear signatures for strong coupling between the electronic states and phonon modes were observed, allowing coherent coupling between otherwise nonresonant transitions. This provides detailed experimental evidence of the long-lived coherences and the nature of the quantum mechanical interactions between electronic states and phonon modes in phycocyanin-645 from cryptophyte marine algae.

摘要

对光合捕光复合物中长寿命相干性的观测利用具有宽光谱带宽的短脉冲来相干激发多个跃迁和相干叠加。然而,为了确定这种量子效应在高效能量转移中可能发挥的作用,需要一种替代方法。我们开发了一种双色光子回波光谱技术,以选择性地激发感兴趣的路径,并在没有任何其他激发的情况下测量其演化。我们使用这种技术激发来自隐藻藻类的藻蓝蛋白 - 645中的一条相干路径,并测量这种相干性的动力学。测量到退相干时间为500飞秒,并且观察到电子态与声子模式之间强耦合的清晰特征,这使得原本非共振跃迁之间能够发生相干耦合。这为来自隐藻海洋藻类的藻蓝蛋白 - 645中的长寿命相干性以及电子态与声子模式之间量子力学相互作用的性质提供了详细的实验证据。

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