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Cooperative robustness to static disorder: Superradiance and localization in a nanoscale ring to model light-harvesting systems found in nature

机译:对静态疾病的合作鲁棒性:超辐射和纳米级环中的定位,以模拟自然界发现的光收集系统

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摘要

We analyze a one-dimensional ring structure composed of many two-level systems, in the limit where only one excitation is present. The two-level systems are coupled to a common environment, where the excitation can be lost, which induces super- and subradiant behavior, an example of cooperative quantum coherent effect. We consider time-independent random fluctuations of the excitation energies. This static disorder, also called inhomogeneous broadening in literature, induces Anderson localization and is able to quench superradiance. We identify two different regimes: (i) weak opening, in which superradiance is quenched at the same critical disorder at which the states of the closed system localize; (ii) strong opening, with a critical disorder strength proportional to both the system size and the degree of opening, displaying robustness of cooperativity to disorder. Relevance to photosynthetic complexes is discussed.
机译:我们分析了由许多两级系统组成的一维环结构,在这种情况下,只有一个激励存在。两级系统耦合到一个公共环境,在该环境中可能会丢失激励,从而引起超辐射和亚辐射行为,这是合作量子相干效应的一个例子。我们考虑激发能量的时间无关的随机波动。这种静态障碍在文献中也称为不均匀展宽,可诱发安德森定位,并能够消除超辐射。我们确定了两种不同的机制:(i)弱开放,其中超辐射在封闭系统状态所处的同一临界紊乱下被淬灭; (ii)强力开放,具有与系统规模和开放程度成正比的严重无序强度,显示了对无序性的协作能力。讨论了与光合复合物的相关性。

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