论文标题
电子等待时间在强烈相互作用的量子点中:相互作用效应和高阶隧道过程
Electron Waiting Times in a Strongly Interacting Quantum Dot: Interaction Effects and Higher-Order Tunneling Processes
论文作者
论文摘要
电子等候时间的分布已经在最近的几个实验中进行了测量,并已证明与从电流波动中学到的内容相比,可以提供互补的信息。但是,现有的理论仅限于介质导体中弱耦合的纳米结构或相位交通运输。在这里,我们考虑了一个相互作用的量子点,并开发了一种可以治疗有趣的状态的等待时间分布的实时图表理论,在这种情况下,相互作用效应和高阶隧道过程都很重要。具体而言,我们发现我们的量子力学理论捕获了低温下的高阶隧道过程,这些过程未包括在经典描述中,并且通过允许在库仑阻滞区域内的快速隧道过程来极大地影响等待时间。我们的工作为对相互作用的量子系统的时间波动的系统研究铺平了道路,例如接近近托共鸣或在luttinger液体中。
Distributions of electron waiting times have been measured in several recent experiments and have been shown to provide complementary information compared to what can be learned from the electric current fluctuations. Existing theories, however, are restricted to either weakly coupled nanostructures or phase-coherent transport in mesoscopic conductors. Here, we consider an interacting quantum dot and develop a real-time diagrammatic theory of waiting time distributions that can treat the interesting regime, in which both interaction effects and higher-order tunneling processes are important. Specifically, we find that our quantum-mechanical theory captures higher-order tunneling processes at low temperatures, which are not included in a classical description, and which dramatically affect the waiting times by allowing fast tunneling processes inside the Coulomb blockade region. Our work paves the way for systematic investigations of temporal fluctuations in interacting quantum systems, for example close to a Kondo resonance or in a Luttinger liquid.