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Transient dynamics of a quantum-dot: From Kondo regime to mixed valence and to empty orbital regimes

机译:Quantum-Dot的瞬态动力学:从Kondo制度到混合价和空轨道制度

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摘要

Based on the hierarchical equations of motion approach, we study the time-dependent transport properties of a strongly correlated quantum dot system in the Kondo regime (KR), mixed valence regime (MVR), and empty orbital regime (EOR). We find that the transient current in KR shows the strongest nonlinear response and the most distinct oscillation behaviors. Both behaviors become weaker in MVR and diminish in EOR. To understand the physical insight, we examine also the corresponding dot occupancies and the spectral functions, with their dependence on the Coulomb interaction, temperature, and applied step bias voltage. The above nonlinear and oscillation behaviors could be understood as the interplay between dynamical Kondo resonance and single electron resonant-tunneling. Published by AIP Publishing.
机译:基于运动方法的层级方程,我们研究了Kondo制度(KR),混合价制(MVR)和空轨道制度(EOR)中强相关量子点系统的时间依赖传输特性。 我们发现KR中的瞬态电流显示出最强的非线性响应和最明显的振荡行为。 两种行为在MVR中变得越来越弱,在EOR中递减。 要了解物理洞察力,我们还考虑了相应的点占用和光谱功能,其依赖于库仑相互作用,温度和施加的台阶偏置电压。 上述非线性和振荡行为可以被理解为动态kondo共振和单电子谐振隧道之间的相互作用。 通过AIP发布发布。

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