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Effect of Time-Delayed Feedback on the Interaction of a Dimer System with its Environment

机译:时滞反馈对二聚体系统与环境相互作用的影响

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摘要

In this work, we report modeling of non-Markovian open quantum systems, consisting of an excitonic dimer that displays memory effect due to time delayed interaction with its environment. We, indeed investigate the effect of these time delays on quantum coherence and excitation dynamical behavior in the time domain generally considered for photosynthetic experiments (few hundred femtoseconds). In particular, we show that the coherence is maintained for periods proportional to time delays. Additionally, if delay is taken into account, coupling to the environment can be tuned to lower values, unlike in previous studies. This kind of intriguing effect can, therefore, when generalized to complete systems, permit more control on the experimental parameters, which may lead to more accurate description of the photosynthetic energy transfer functioning and subsequent applications in artificial photovoltaic research.
机译:在这项工作中,我们报告了非马尔可夫开放量子系统的建模,该系统由一个激子二聚体组成,该激子二聚体由于与环境之间的时间相互作用而显示记忆效应。我们确实在光合作用实验(几百飞秒)通常考虑的时域内研究了这些时间延迟对量子相干性和激发动力学行为的影响。特别是,我们表明相干性在与时间延迟成比例的时间内保持不变。此外,如果考虑到延迟,则可以将与环境的耦合调整为较低的值,这与以前的研究不同。因此,当将其推广到完整的系统中时,这种引人入胜的效果可以允许对实验参数进行更多控制,从而可以更准确地描述光合作用的能量传递功能以及随后在人工光伏研究中的应用。

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