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Tunneling Conductance in Superconductor-Hybrid Double Quantum Dots Josephson Junction

机译:超导体 - 混合双量子点Josephson结的隧道电导

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The present work deals with the theoretical model study to analyse the tunneling conductance across a superconductor hybrid double quantum dots tunnel junction (S-DQD-S). Recently, there are many experimental works where the Josephson current across such nanoscopic junction is found to be dependent on nature of the superconducting electrodes, coupling of the hybrid double quantum dot's electronic states with the electronic states of the superconductors and nature of electronic structure of the coupled dots. For this, we have attempted a theoretical model containing contributions ofBCS superconducting leads, magnetic coupled quantum dot states and coupling of superconducting leads with QDs. In order to include magnetic coupled QDs the contributions of competitive Kondo and Ruderman-Kittel-Kasuya-Yosida (RKKY) interaction terms are also introduced through many body effects in the model Hamiltonian at low temperatures (where Kondo temperature T_K < superconducting transition temperature T_c). Employing non-equilibrium Green's function approach within mean field approximation, we have obtained expressions for density of states (DOS) and analysed the same using numerical computation to underline the nature of DOS close to Fermi level in S-DQD-S junctions. On the basis of numerical computation, it is pointed out that indirect exchange interaction between impurities (QD) i.e. RKKY interaction suppresses the screening of magnetic QD due to Cooper pair electrons i.e. Kondo effect in the form of reduction in the magnitude of sharp DOS peak close to Fermi level which is in qualitative agreement with the experimental observations in such tunnel junctions. Tunneling conductance is proportional to DOS, hence we can analyse it's behaviour with the help of DOS.
机译:本工作涉及理论模型研究,分析超导体混合双量子点隧道结(S-DQD-S)的隧道电导。最近,存在跨越这些纳米结的约瑟夫逊电流被发现依赖于超导电极的性质的许多实验工作,与超导体的电子态和电子结构的性质的混合双量子点的电子状态的联接耦合点。为此,我们已经尝试了含有超导引线的贡献的理论模型,磁耦合量子点状态和超导引线与QDS的耦合。为了包括磁性耦合QDS竞争Kondo和Ruderman-Kittel-Kasuya-Yosida(Rkky)交互术语的贡献也是通过在低温下模型Hamiltonian的许多体效应引入(其中Kondo温度T_K <超导转变温度T_C) 。在平均场近似内采用非平衡绿色的功能方法,我们已经获得了各种状态(DOS)的表达,并使用数值计算分析了相同的方法,以强调在S-DQD-S交界处接近Fermi水平的DOS的性质。在数值计算的基础上,指出杂质(QD)IE之间的间接交换相互作用抑制了由于Cooper对电子,即Kondo效应在尖锐DOS峰值的幅度幅度的减小的形式中抑制了磁QD的筛选到Fermi水平与这种隧道连接中的实验观察中的定性协议。隧道电导与DOS成比例,因此我们可以在DOS的帮助下分析它的行为。

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