论文标题

量子点中的多级相干

Multilevel coherences in quantum dots

论文作者

Maurer, Martin T., König, Jürgen, Schoeller, Herbert

论文摘要

我们通过具有$ N $能级的强烈相互作用的量子点研究运输,这些点与通用多通道金属铅弱耦合。在连贯的顺序隧道方面,水平间距和宽度的顺序相同,但与温度相比小,但我们提出了一个统一的,$ su(n)$ - 不变形式的动力学方程式,用于降低点的密度矩阵和隧道电流。这是通过引入点和储层的风味极化概念,并以风味积累,各向异性风味放松以及交换场和失调诱导的风味旋转来分裂动力学方程。特别是,我们将交换场确定为在通用量子点模型中出现的异子偏置电压下负差电导的原因。为了说明风味极化的概念,我们通过三重量子点设备分析了非线性电流。

We study transport through strongly interacting quantum dots with $N$ energy levels that are weakly coupled to generic multi-channel metallic leads. In the regime of coherent sequential tunneling, where level spacing and broadening are of the same order but small compared to temperature, we present a unified, $SU(N)$-invariant form of the kinetic equation for the reduced density matrix of the dot and the tunneling current. This is achieved by introducing the concept of flavor polarization for the dot and the reservoirs, and splitting the kinetic equation in terms of flavor accumulation, anisotropic flavor relaxation, as well as exchange-field- and detuning-induced flavor rotation. In particular, we identify the exchange field as the cause of negative differential conductance at off-resonance bias voltages appearing in generic quantum-dot models. To illustrate the notion of flavor polarization, we analyze the non-linear current through a triple quantum-dot device.

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