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Interpolative Approach For Electron-electron And Electron-phonon Interactions: From The Kondoto The Polaronic Regime

机译:电子-电子和电子-声子相互作用的插值方法:《近藤》中的极化子体制

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We present a theoretical approach to determine the electronic properties of nanoscale systems exhibiting strong electron-electron and electron-phonon interactions and coupled to metallic electrodes. This approach is based on an interpolative ansatz for the electronic self-energy which becomes exact both in the limit of weak and strong coupling to the electrodes. The method provides a generalization of previous interpolative schemes which have been applied to the purely electronic case extensively. As a test case we consider the single level Anderson-Holstein model. The results obtained with the interpolative ansatz are in good agreement with existing data from numerical renormalization group calculations. We also check our results by considering the case of the electrodes represented by a few discrete levels which can be diagonalized exactly. The approximation describes properly the transition from the Kondo regime where electron-electron interactions dominate to the polaronic case characterized by a strong electron-phonon interaction.
机译:我们提出了一种理论方法来确定表现出强电子-电子和电子-声子相互作用并耦合到金属电极的纳米级系统的电子性能。该方法基于电子自能的插值ansatz,在对电极的弱耦合和强耦合的限制内,精确性都很高。该方法提供了已广泛应用于纯电子盒的先前插值方案的概括。作为一个测试案例,我们考虑了单层的Anderson-Holstein模型。用插值ansatz获得的结果与数值重归一化组计算中的现有数据非常吻合。我们还通过考虑由几个离散水平代表的电极的情况来检查我们的结果,这些水平可以精确地对角线化。近似正确地描述了从近电子态过渡到电子特征相互作用强的极化子情况的过渡,近藤态中电子电子相互作用占主导地位。

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