Zhang Yanchao, Lin Guoxing, Chen Jincan
Department of Physics, Xiamen University, Xiamen 361005, People's Republic of China.
Phys Rev E Stat Nonlin Soft Matter Phys. 2015 May;91(5):052118. doi: 10.1103/PhysRevE.91.052118. Epub 2015 May 13.
Based on two capacitively coupled quantum dots in the Coulomb-blockade regime, a model of three-terminal quantum-dot refrigerators is proposed. With the help of the master equation, the transport properties of steady-state charge current and energy flow between two quantum dots and thermal reservoirs are revealed. It is expounded that such a structure can be used to construct a refrigerator by controlling the voltage bias and temperature ratio. The thermodynamic performance characteristics of the refrigerator are analyzed, including the cooling power, coefficient of performance (COP), maximum cooling power, and maximum COP. Moreover, the optimal regions of main performance parameters are determined. The influence of dissipative tunnel processes on the optimal performance is discussed in detail. Finally, the performance characteristics of the refrigerators operated in two different cases are compared.
基于处于库仑阻塞区的两个电容耦合量子点,提出了一种三端量子点制冷机模型。借助主方程,揭示了两个量子点与热库之间稳态电荷电流和能量流的输运特性。阐述了通过控制电压偏置和温度比,这种结构可用于构建制冷机。分析了制冷机的热力学性能特性,包括制冷功率、性能系数(COP)、最大制冷功率和最大COP。此外,确定了主要性能参数的最佳区域。详细讨论了耗散隧道过程对最佳性能的影响。最后,比较了在两种不同情况下运行的制冷机的性能特性。