论文标题

量子杂质系统中的Kondo冷却

Kondo cooling in quantum impurity systems

论文作者

Zeng, Xiangzhong, Ye, Lyuzhou, Cao, Long, Xu, Rui-Xue, Zheng, Xiao, Di Ventra, Massimiliano

论文摘要

Peltier效应是Seebeck效应的反向现象,并且在纳米级连接中已经通过实验观察到。然而,尽管在纳米电器设备的局部冷却中具有有希望的应用,但强电子相关性在这种现象上的作用仍不清楚。在这里,通过分析量子杂质系统的热电性能以平衡的范围,我们揭示了电子电子相互作用和量子共振状态在Peltier冷却中的重要作用,从而预测了近托冷却现象的预测。这种近藤冷却的存在通过反向热电流和模型结中的局部温度降低来验证。这种非常规的毛皮尔冷却的发现提供了一种新的方法,可实现纳米 - 改进的方法,并突出了强电子相关性在非平衡量子系统中的独特作用。

The Peltier effect is the reverse phenomenon of the Seebeck effect, and has been observed experimentally in nanoscale junctions. However, despite its promising applications in local cooling of nanoelectronic devices, the role of strong electron correlations on such a phenomenon is still unclear. Here, by analyzing the thermoelectric properties of quantum impurity systems out of equilibrium, we unveil the essential role of electron-electron interactions and quantum resonant states in Peltier cooling, leading to the prediction of the Kondo cooling phenomenon. The existence of such Kondo cooling is validated by a reverse heat current and a lowered local temperature in a model junction. The discovery of this unconventional Peltier cooling offers a new approach toward nano-refrigeration, and highlights the unique role of strong electron correlations in nonequilibrium quantum systems.

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