Publication | Open Access
Dynamic measurement of near-field radiative heat transfer
39
Citations
53
References
2017
Year
Radiative Heat TransferEngineeringThermal RadiationHeat Transfer ProcessRadiative TransferTransport PhenomenaThermodynamicsThermal ConductionInstrumentationPhysicsThermal TransportHeat TransferBlack BodiesEffective Heat TransferDynamic MeasurementTemperature TransientApplied PhysicsThermal EngineeringEmissivity
Super-Planckian near-field radiative heat transfer allows effective heat transfer between a hot and a cold body to increase beyond the limits long known for black bodies. Until present, experimental techniques to measure the radiative heat flow relied on steady-state systems. Here, we present a dynamic measurement approach based on the transient plane source technique, which extracts thermal properties from a temperature transient caused by a step input power function. Using this versatile method, that requires only single sided contact, we measure enhanced radiative conduction up to 16 times higher than the blackbody limit on centimeter sized glass samples without any specialized sample preparation or nanofabrication.
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