论文标题

介质系统中的布朗热晶体管和冰箱

Brownian thermal transistors and refrigerators in mesoscopic systems

论文作者

Lu, Jincheng, Wang, Rongqian, Wang, Chen, Jiang, Jian-Hua

论文摘要

波动在介观系统中具有重要意义,并且在理解量子运输方面特别重要。在这里,我们表明波动可以作为开放量子系统作为功能设备操作的资源。我们在高斯波动框架下得出了热晶体管扩增因子和通过加热冰箱效率的统计数据。在线性反应状态下,揭示了随机热晶体管和通过加热效率的统计特性。我们阐明了非弹性过程在介观系统中热运输中的独特作用。我们进一步表明,弹性和非弹性过程通过建立一个通用的理论框架来基于线性传输系数而导致不同的界限,以相等的方式处理电子和波斯克人集体激发。尽管该理论适用于更一般的系统,但使用双量子点三末端系统进行了凝结的基础物理。

Fluctuations are significant in mesoscopic systems and of particular importance in understanding quantum transport. Here, we show that fluctuations can be considered as a resource for the operations of open quantum systems as functional devices. We derive the statistics of the thermal transistor amplification factor and the cooling-by-heating refrigerator efficiency under the Gaussian fluctuation framework. Statistical properties of the stochastic thermal transistor and the cooling-by-heating efficiency are revealed in the linear-response regime. We clarify the unique role of inelastic processes on thermal transport in mesoscopic systems. We further show that elastic and inelastic processes lead to different bounds based on the linear transport coefficients by establishing a generic theoretical framework for mesoscopic heat transport, which treats electron and bosonic collective excitations in an equal-footing manner. The underlying physics are illustrated concretely using a double-quantum-dot three-terminal system, though the theory applies to more general systems.

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