论文标题

量子棘轮状态增强了轻度收获

Light-harvesting enhanced by quantum ratchet states

论文作者

Werren, Nicholas, Brown, William M., Gauger, Erik M.

论文摘要

我们将生物启发的环系统视为光伏电路,以探索“光学棘轮”的优势,在该过程中,耦合光学偶极子的排列可实现避免辐射衰减的脱位激素状态,同时允许吸收进一步的光子。我们探讨了当激子从天线不连贯或相干提取到相关的陷阱位点时,棘轮天线尺度的性能如何具有系统大小。在这两种情况下,我们还移动到北极子框架,以更紧密地模拟现实的系统,在这些系统中,通常可以假定将耦合到振动模式很强。我们发现预测性能对几何布置,提取机理和振动耦合强度之间的相互作用的多面和细微依赖性。某些制度支持每个站点提取的功率的大量绩效提高。

We consider bio-inspired ring systems as photovoltaic circuits to explore the advantage of `optical ratcheting', a process whereby the arrangement of coupled optical dipoles enables delocalised excitonic states that are protected against radiative decay whilst permitting the absorption of further photons. We explore how the performance of a ratcheting antenna scales with system size when excitons are incoherently or coherently extracted from the antenna to an associated trap site. In both instances we also move to the polaron frame in order to more closely model realistic systems where the coupling to vibrational modes can generally be assumed to be strong. We find a multifaceted and nuanced dependence of the predicted performance on an interplay between geometrical arrangement, extraction mechanism, and vibrational coupling strength. Certain regimes support substantial performance improvements in the power extracted per site.

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