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Cumulant reduced density matrices as measures of statistical dependence and entanglement between electronic quantum domains with application to photosynthetic light harvesting

机译:累积量降低的密度矩阵,作为统计依赖性和电子量子域之间纠缠的量度,并应用于光合作用的光收集

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摘要

Recent ultrafast spectroscopy experiments have demonstrated the entanglement of chromophores in photosynthetic light harvesting. Here we apply the cumulant parts of reduced density matrices (RDMs) to measure the statistical dependence and entanglement between electronic quantum domains in light harvesting. Because the cumulant RDMs are invariant to one-electron unitary transformations, they provide a measure of electron correlation and entanglement that is independent of the orbital basis set. Specifically, we apply the cumulant to a three-chromophore subsystem of the Fenna-Matthews-Olson complex, which has been shown to exhibit similar entanglement as the full system. Time-dependent Frobenius norms of the cumulant p-RDMs for 2≤p≤6 reveal correlation and entanglement in groupings of p chromophores. The results show that the entanglement of pairs of chromophores is significantly more important than the entanglement in higher groupings of the chromophores. Data from the model are generally consistent with recent findings from ultrafast spectroscopy. Beyond their application to light harvesting, the Frobenius norms of the cumulant RDMs provide a useful measure of statistical dependence, correlation, and entanglement between electronic quantum domains with applications to molecules and materials.
机译:最近的超快光谱实验已经证明了发色团在光合光收集中的纠缠。在这里,我们应用降密度矩阵(RDM)的累积部分来测量光收集中电子量子域之间的统计依赖性和纠缠。因为累积的RDM对于单电子unit变换是不变的,所以它们提供了独立于轨道基础集的电子相关性和纠缠度的量度。具体而言,我们将累积剂应用于Fenna-Matthews-Olson络合物的三色团子系统,该子系统已显示出与整个系统相似的纠缠。累积量p-RDM在2≤p≤6时随时间变化的Frobenius范数揭示了p发色团的相关性和纠缠。结果表明,发色团对的缠结比发色团的较高组中的缠结要重要得多。该模型的数据通常与超快光谱学的最新发现相一致。除了用于光收集之外,累积量RDM的Frobenius规范还提供了一种有用的度量,用于统计电子量子域与分子和材料之间的统计依赖性,相关性和纠缠。

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