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首页> 外文期刊>Physical review, B >Functional renormalization group study of parallel double quantum dots: Effects of asymmetric dot-lead couplings
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Functional renormalization group study of parallel double quantum dots: Effects of asymmetric dot-lead couplings

机译:并联双量子点的功能重整组研究:非对称点引线联轴器的影响

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We explore the effects of asymmetry of hopping parameters between double parallel quantum dots and the leads on the conductance and a possibility of local magnetic moment formation in this system using functional renormalization group approach with the counterterm. We demonstrate a possibility of a quantum phase transition to a local moment regime [so-called singular Fermi liquid (SFL) state] for various types of hopping asymmetries and discuss respective gate voltage dependencies of the conductance. We show that, depending on the type of the asymmetry, the system can demonstrate either a first-order quantum phase transition to an SFL state, accompanied by a discontinuous change of the conductance, similarly to the symmetric case, or the second-order quantum phase transition, in which the conductance is continuous and exhibits Fano-type asymmetric resonance near the transition point. A semianalytical explanation of these different types of conductance behavior is presented.
机译:我们探讨了双行量子点与导线之间跳跃参数的影响,并使用功能重整组方法与逆床进行该系统在该系统中的局部磁矩形成的可能性。 我们展示了量子相转变对当地时刻改造的可能性,用于各种类型的跳跃非对称性,并讨论电导的各自的栅极电压依赖性的各种类型的液体液体(SFL)状态。 我们表明,根据不对称性的类型,系统可以展示到SFL状态的一阶量子相位转换,伴随着电导的不连续变化,类似于对称情况或二阶量子 相转变,其中电导是连续的并且在过渡点附近表现出Fano型不对称谐振。 介绍了这些不同类型的电导行为的半级解释。

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