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The Molecular Photo-Cell: Quantum Transport and Energy Conversion at Strong Non-Equilibrium

机译:分子光电池:强非平衡时的量子输运和能量转换

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摘要

The molecular photo-cell is a single molecular donor-acceptor complex attached to electrodes and subject to external illumination. Besides the obvious relevance to molecular photo-voltaics, the molecular photo-cell is of interest being a paradigmatic example for a system that inherently operates in out-of-equilibrium conditions and typically far from the linear response regime. Moreover, this system includes electrons, phonons and photons, and environments which induce coherent and incoherent processes, making it a challenging system to address theoretically. Here, using an open quantum systems approach, we analyze the non-equilibrium transport properties and energy conversion performance of a molecular photo-cell, including both coherent and incoherent processes and treating electrons, photons, and phonons on an equal footing. We find that both the non-equilibrium conditions and decoherence play a crucial role in determining the performance of the photovoltaic conversion and the optimal energy configuration of the molecular system.
机译:分子光电池是附着在电极上并受到外部光照的单个分子供体-受体复合物。除了与分子光伏具有明显的相关性外,分子光电池作为系统固有的不平衡条件且通常远离线性响应体系的系统的范例也很受关注。而且,该系统包括电子,声子和光子,以及诱发相干和非相干过程的环境,这使其在理论上难以解决。在这里,我们使用开放量子系统方法,分析分子光电池的非平衡传输特性和能量转换性能,包括相干和非相干过程,并在平等的基础上处理电子,光子和声子。我们发现非平衡条件和退相干在决定光伏转换性能和分子系统的最佳能量构型方面都起着至关重要的作用。

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