arXiv · 1507.00265
Temperature control of thermal radiation from heterogeneous bodies
Abstract
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.
Explore related subjects
Keep this discovery
Weiliang Jin, Athanasios G. Polimeridis, Alejandro W. Rodriguez. 2015-07-01. Temperature control of thermal radiation from heterogeneous bodies. https://doi.org/10.1103/physrevb.93.121403
Cite the original work for its findings. Save a collection to share your selection of sources.