Publication | Open Access
Theory of many-body radiative heat transfer without the constraint of reciprocity
68
Citations
81
References
2018
Year
Radiative Heat TransferEngineeringThermal EnergyThermal RadiationHeat Transfer ProcessRadiative TransferMagnetohydrodynamicsTransport PhenomenaThermodynamicsComputational ElectromagneticsPhysicsThermal TransportRadiative AbsorptionHeat TransferElectromagnetic Heat TransferPersistent HeatRadiative Transfer ModellingApplied PhysicsThermal EquilibriumThermal Engineering
Understanding electromagnetic heat transfer in many-body systems is critical to exploring new physics effects that can arise in reciprocal and nonreciprocal many-body systems. Here, the authors develop explicit and compact formulas for electromagnetic heat transfer in systems consisting of a large number of bodies without the constraint of reciprocity. They go on to demonstrate the emergence of a persistent heat current at thermal equilibrium and a directional heat flow at nonequilibrium in systems composed of multiple magneto-optical particles. This opens up possibilities for controlling near-field electromagnetic heat transfer using complex reciprocal and nonreciprocal systems.
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