Litcius/Paper detail

Time-modulated near-field radiative heat transfer

Renwen Yu, Shanhui Fan

2024Proceedings of the National Academy of Sciences31 citationsDOIOpen Access PDF

Abstract

Near-field radiative heat transfer has recently attracted increasing interests for its applications in energy technologies, such as thermophotovoltaics. Existing works, however, are restricted to time-independent systems. Here, we explore near-field radiative heat transfer between two bodies under time modulation by developing a rigorous fluctuational electrodynamics formalism. We demonstrate that time modulation can result in the enhancement, suppression, elimination, or reversal of radiative heat flow between the two bodies, and can be used to create a radiative thermal diode with an infinite contrast ratio, as well as a near-field radiative heat engine that pumps heat from the cold to the hot bodies. The formalism reveals a fundamental symmetry relation in the radiative heat transfer coefficients that underlies these effects. Our results indicate the significant capabilities of time modulation for managing nanoscale radiative heat flow.

Topics & Concepts

Radiative transferThermal radiationHeat transferPhysicsMechanicsThermalRadiative coolingAtmospheric radiative transfer codesComputational physicsThermodynamicsOpticsThermal Radiation and Cooling TechnologiesQuantum Electrodynamics and Casimir EffectOptical properties and cooling technologies in crystalline materials