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arxiv: 1507.00265 · v1 · pith:6MCAKMATnew · submitted 2015-07-01 · ❄️ cond-mat.mes-hall

Temperature control of thermal radiation from heterogeneous bodies

classification ❄️ cond-mat.mes-hall
keywords temperatureradiationthermalbodiescomplicatedlocalizationpartialadvances
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We demonstrate that recent advances in nanoscale thermal transport and temperature manipulation can be brought to bear on the problem of tailoring thermal radiation from compact emitters. We show that wavelength-scale composite bodies involving complicated arrangements of phase-change chalcogenide (GST) glasses and metals or semiconductors can exhibit large emissivities and partial directivities at mid-infrared wavelengths, a consequence of temperature localization within the GST. We consider multiple object topologies, including spherical, cylindrical, and mushroom-like composites, and show that partial directivity follows from a complicated interplay between particle shape, material dispersion, and temperature localization. Our calculations exploit a recently developed fluctuating-volume current formulation of electromagnetic fluctuations that rigorously captures radiation phenomena in structures with both temperature and dielectric inhomogeneities.

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