系统浴耦合对光合热机的影响:一个极化子主方程方法

M. Qin, H. Shen, X. L. Zhao, X. Yi
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引用次数: 22

摘要

本文利用极化子主方程,在弱耦合和强耦合之间进行插值,研究了系统耦合在大参数范围内如何影响光系统II反应中心(PSII RC)启发量子热机(QHE)模型中的电荷转移过程。还详细讨论了浴液相关性和温度的影响,以及这些因素的综合影响。结果显示出多种动力学行为。我们从噪声辅助输运效应和动态局部化的角度来解释这些结果,这对应于光合复合体中传递过程的两种机制:一种是共振能量传递,另一种是极化子主方程捕获的动态局部化效应。系统-槽耦合和槽相关性的影响被纳入有效的系统-槽耦合强度,决定了是噪声辅助输运效应还是动力局部化主导了动力学,而温度调节了这两种机制的平衡。此外,这两种机制可归因于一个物理根源:浴池引起的波动。这两种机制是在各自的参数范围内,浴液诱导波动发挥双重作用的表现。此外,我们发现,只要系统耦合强度不太大,QHE的有效电压对槽噪声具有较好的鲁棒性。
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Effects of system-bath coupling on Photosynthetic heat engine: A polaron master equation approach
In this paper, we apply the polaron master equation, which offers the possibilities to interpolate between weak and strong system-bath coupling, to study how system-bath couplings affect charge transfer processes in Photosystem II reaction center (PSII RC) inspired quantum heat engine (QHE) model in a wide parameter range. The effects of bath correlation and temperature, together with the combined effects of these factors are also discussed in details. The results show a variety of dynamical behaviours. We interpret these results in terms of noise-assisted transport effect and dynamical localization which correspond to two mechanisms underpinning the transfer process in photosynthetic complexes: One is resonance energy transfer and the other is dynamical localization effect captured by the polaron master equation. The effects of system-bath coupling and bath correlation are incorporated in the effective system-bath coupling strength determining whether noise-assisted transport effect or dynamical localization dominates the dynamics and temperature modulates the balance of the two mechanisms. Furthermore, these two mechanisms can be attributed to one physical origin: bath-induced fluctuations. The two mechanisms is manifestations of dual role played by bath-induced fluctuations within respective parameter range. In addition, we find that the effec- tive voltage of QHE exhibits superior robustness with respect to the bath noise as long as the system-coupling strength is not too large.
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