Physical Review Letters · 2013 · 36 citations · 28 references
Radiative Heat TransferEngineeringPerforated SurfaceMetamaterialsThermal RadiationConvective Heat TransferElectromagnetic MetamaterialsHeat Transfer ProcessOptical PropertiesThermodynamicsComputational ElectromagneticsNatural ConvectionPolar DielectricsNanophotonicsMaterials SciencePhysicsThermal TransportHeat TransferHeuristic ModelHeat Transfer EnhancementApplied PhysicsMaterial DispersionDynamic MetamaterialsThermal Engineering
We predict that the near-field radiative heat-transfer rate between a cylinder and a perforated surface depends nonmonotonically on their separation. This anomalous behavior, which arises due to evanescent-wave effects, is explained using a heuristic model based on the interaction of a dipole with a plate. We show that nonmonotonicity depends not only on geometry and temperature but also on material dispersion--for micron and submicron objects, nonmonotonicity is present in polar dielectrics but absent in metals with small skin depths.
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Radiative heat transfer at the nanoscale
Emmanuel Rousseau, Alessandro Siria, Guillaume Jourdan et al. · Nature Photonics · 2009 · 664 citations