Thermal rectification and heat amplification in a nonequilibrium V-type three-level system
Quantum Physics
2019-04-10 v2
Abstract
Thermal rectification and heat amplification are investigated in a nonequilibrium V-type three-level system with quantum interference. By applying the Redfield master equation combined with full counting statistics, we analyze the steady state heat transport. The noise-induced interference is found to be able to rectify the heat current, which paves a new way to design quantum thermal rectifier. Within the three-reservoir setup, the heat amplification is clearly identified far-from equilibrium, which is in absence of the negative differential thermal conductance.
Cite
@article{arxiv.1806.04794,
title = {Thermal rectification and heat amplification in a nonequilibrium V-type three-level system},
author = {Chen Wang and Dazhi Xu and Huan Liu and Xianlong Gao},
journal= {arXiv preprint arXiv:1806.04794},
year = {2019}
}
Comments
14pages,6figures