论文标题
非线性冷却具有拓扑边缘状态的两端构型的详细研究
Detailed study of nonlinear cooling with two-terminal configurations of topological edge states
论文作者
论文摘要
我们研究了量子自旋大厅系统的非线性热电冷却性能。该设置由接触Kramers对螺旋边缘状态的纳米磁体组成,从而产生具有丰富结构的传输概率,其中包含峰,良好的型和步进型特征。我们对所有这些特征对冷却性能的影响进行详细分析,并在很大程度上取决于分析结果。我们分析了设备性能的冷却能力和性能系数。由于我们研究的基本特征可能存在于其他介质导体的传输功能中,因此我们的结论提供了有用的见解,可以分析广泛的量子设备的非线性热电行为。所有这些属性的组合定义了量子旋转厅设置的响应,为此,我们为限制条件的限制和优化其作为冷却装置的操作提供了一些现实的估计。
We study the nonlinear thermoelectric cooling performance of a quantum spin Hall system. The setup consists of a nanomagnet contacting a Kramers' pair of helical edge states, resulting in a transmission probability with a rich structure containing peaks, well-type, and step-type features. We present a detailed analysis of the impact of all these features on the cooling performance, based to a large extent on analytical results. We analyze the cooling power as well as the coefficient of performance of the device. Since the basic features we study may be present in the transmission function of other mesoscopic conductors, our conclusions provide useful insights to analyze the nonlinear thermoelectric behavior of a wide class of quantum devices. The combination of all these properties define the response of the quantum spin Hall setup, for which we provide some realistic estimates for the conditions limiting and optimizing its operation as a cooling device.