Zerah Harush Elinor, Dubi Yonatan
Department of Chemistry and Ilse Katz Center for Nanoscale Science and Technology, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.
ACS Omega. 2023 Oct 11;8(42):38871-38878. doi: 10.1021/acsomega.3c02676. eCollection 2023 Oct 24.
Unraveling the energy transfer pathways in photosynthetic complexes is an important step toward understanding their structure-function interplay. Here, we use an open quantum systems approach to investigate energy transfer within the LH2 photosynthetic apparatus and its dependence on environmental conditions. We find that energy transfer pathways strongly depend on the environment-induced dephasing time. A comparison between the computational results and experiments performed on similar systems demonstrates that quantum coherences are present in these systems under physiological conditions and have an important role in shaping the energy transfer pathways. Moreover, our calculations indicate that relatively simple spectroscopy experiments can be used to detect traces of quantum coherence. Finally, our results suggest that quantum coherence may play a role in photosynthesis, but not in enhancing the efficiency as was previously suggested.
揭示光合复合体中的能量转移途径是理解其结构与功能相互作用的重要一步。在此,我们采用开放量子系统方法来研究LH2光合装置内的能量转移及其对环境条件的依赖性。我们发现能量转移途径强烈依赖于环境诱导的退相时间。对类似系统进行的计算结果与实验之间的比较表明,在生理条件下这些系统中存在量子相干,并且在塑造能量转移途径方面具有重要作用。此外,我们的计算表明相对简单的光谱实验可用于检测量子相干的痕迹。最后,我们的结果表明量子相干可能在光合作用中发挥作用,但并非如先前所认为的那样提高效率。