在电子振动耦合和有吸引力的电子-电子关联存在的情况下,通过单分子结中的退化电子水平进行电子传输

Pub Date : 2024-05-01 DOI:10.1063/10.0025624
E. A. Ponezha
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引用次数: 0

摘要

在非平衡状态下,研究了电子通过由单个分子与宏观导线耦合组成的分子交界处的传输。分子被模拟为一个具有电子-振动相互作用和吸引力的电子-电子相关性的退化能级,从而解除了退化。在低温和有限电压下,计算了反绝热状态下的能级占位和差分电导,并考虑了分子-导线耦合。利用输运光谱法,可以确定根据施加的电压,隧道隧穿是通过哪个分裂水平进行的,并估算出通过这些水平的电流。讨论了负差分电导的情况。分析了在有吸引力的电子-电子相互作用下,不同强度的电子-振动耦合对电子通过分子上的 2 倍和 4 倍退化水平的隧穿的影响。
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Electron transport through degenerate electron level in single-molecular junction in the presence of electron-vibrational coupling and attractive electron-electron correlations
Electron transport through a molecular junction consisted of a single molecule coupled to macroscopic leads is studied in the nonequilibrium regime. The molecule is modeled as a degenerate energy level with an electron-vibrational interaction and attractive electron-electron correlation which lifts the degeneracy. The level occupancy and differential conductance are calculated in the antiadiabatic regime with an account of molecule-lead coupling at low temperature and finite voltage. The method of transport spectroscopy made it possible to determine through which of the split levels tunneling takes place depending on the applied voltages and to estimate the current through these levels. The cases of a negative differential conductance are discussed. The influence of the electron-vibrational coupling of different strength on electron tunneling through 2- and 4-fold degenerate level on the molecule in the presence of the attractive electron-electron interaction is analyzed.
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