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Phonon-assisted zero bias anomaly in a single-molecule quantum dot coupled to the Luttinger liquid leads

机译:耦合到Luttinger液体引线的单分子量子点中的声子辅助零偏压异常

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摘要

The joint effects of the electron-phonon interaction and electron-electron interaction in the Luttinger liquid leads on nonequilibrium transport through a single-molecule transistor in the Kondo regime are investigated by using the improved canonical transformation scheme and equation of motion approach. For weak intralead electron interaction, a pronounced dip around zero bias, accompanied by a series of discrete single-electron tunneling peaks is observed in the differential conductance. With the increase of the intralead interaction, the phonon-assisted peaks turn into dips, which demonstrates a phononassisted two-channel Kondo physics. For a certain region of interaction strength the inelastic electron tunneling can dominate electron transport. Our results well explain the experiments of zero bias anomaly.
机译:通过使用改进的规范变换方案和运动方程方法,研究了Luttinger液体导线中电子-声子相互作用和电子-电子相互作用对通过Kondo型单分子晶体管的非平衡传输的联合影响。对于弱的铅内电子相互作用,在电导率差中观察到零偏压附近的明显下降,并伴随着一系列离散的单电子隧穿峰。随着导线内相互作用的增加,声子辅助的峰变为谷,这表明了声子辅助的两通道近藤物理学。对于相互作用强度的某个区域,非弹性电子隧穿可以主导电子传输。我们的结果很好地解释了零偏差异常的实验。

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