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Sufficient condition for the openness of a many-electron quantum system from the violation of a generalized Pauli exclusion principle

机译:违反广义保利排斥原理的多电子量子系统开放性的充分条件

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Information about the interaction of a many-electron quantum system with its environment, we show, is encoded within the one-electron density matrix (1-RDM). While the 1-RDM from an ensemble many-electron quantum system must obey the Pauli exclusion principle, the 1-RDM must obey additional constraints known as generalized Pauli conditions when it corresponds to a closed system describable by a single wave function. By examining the 1-RDM's violation of these generalized Pauli conditions, we obtain a sufficient condition at the level of a single electron for a many-electron quantum system's openness. In an application to exciton dynamics in photosynthetic light harvesting we show that the interaction of the system with the environment (quantum noise) relaxes significant constraints imposed on the exciton dynamics by the generalized Pauli conditions. This relaxation provides a geometric (kinematic) interpretation for the role of noise in enhancing exciton transport in quantum systems.
机译:我们显示,关于多电子量子系统与其环境的相互作用的信息被编码在单电子密度矩阵(1-RDM)中。来自整体多电子量子系统的1-RDM必须遵守保利排除原理,而当1-RDM对应于由单波函数描述的封闭系统时,则必须遵守称为一般Pauli条件的其他约束。通过研究1-RDM对这些广义Pauli条件的违反,我们在单电子水平上获得了对于多电子量子系统开放性的充分条件。在光合作用光捕获中激子动力学的应用中,我们表明系统与环境的相互作用(量子噪声)可以缓解广义保立条件对激子动力学施加的重要约束。这种放松为噪声在增强量子系统中激子传输中的作用提供了几何(运动学)解释。

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