Radiative thermal rectification in many-body systems
Abstract
Radiative thermal diodes based on two-element structures rectify heat flows thanks to a temperature dependence of material optical properties. The heat transport asymmetry through these systems, however, remains weak without a significant change in material properties with the temperature. Here we explore the heat transport in three-element radiative systems and demonstrate that a strong asymmetry in the thermal conductance can appear because of many-body interactions, without any dependence of optical properties on the temperature. The analysis of transport in three-body systems made with polar dielectrics and metallic layers reveals that rectification coefficients exceeding 50 % can be achieved in the near-field regime with temperature differences of about 200 K. This work paves the way for compact devices to rectify near field radiative heat fluxes over a broad temperature range and could have important applications in the domain of nanoscale thermal management.
Cite
@article{arxiv.2105.06891,
title = {Radiative thermal rectification in many-body systems},
author = {Ivan Latella and Philippe Ben-Abdallah and Moladad Nikbakht},
journal= {arXiv preprint arXiv:2105.06891},
year = {2021}
}
Comments
9 pages, 3 figures