Applied Physics Letters · 1980 · 185 citations · 7 references
Radiative Heat TransferOptical MaterialsEngineeringThermal RadiationRefrigerationEfficient Radiative CoolingRadiative TransferOptical PropertiesAtmospheric ScienceDesired Reflectance ProfileMaterials ScienceRadiative AbsorptionRadiation MeasurementRadiometryHeat TransferSurface ScienceApplied PhysicsDestructive InterferenceRadiative CoolingThin FilmsThermal EngineeringChemical Vapor DepositionEmissivity
Efficient radiative cooling is feasible with surfaces which radiate predominantly in the 8–13-μm wavelength range, where the atmosphere emittance is low. The desired reflectance profile was approximated with 1.0 μm of SiO evaporated onto Al. It results from strong lattice absorption in SiO in conjunction with destructive interference. Refrigeration to 40 K below the ambient appears to be possible under suitable climatic conditions.
7
American Institute of Physics Handbook
Irving E. Dayton · American Journal of Physics · 1964 · 3K citations
G. Hass, D. Gerstenberg · Journal of The Electrochemical Society · 1964 · 1.8K citations
The radiative cooling of selective surfaces
S. Catalanotti, V. Cuomo, G. Piro et al. · Solar Energy · 1975 · 556 citations
Nocturnal and diurnal performances of selective radiators
B. Bartoli, S. Catalanotti, B. Coluzzi et al. · Applied Energy · 1977 · 181 citations
Radiative Absorption, Thermal Radiation, Selective Radiators +1