Shape-Independent Limits to Near-Field Radiative Heat Transfer
arXiv:1504.01323 · doi:10.1103/PhysRevLett.115.204302
Abstract
We derive shape-independent limits to the spectral radiative heat-transfer rate between two closely spaced bodies, generalizing the concept of a black body to the case of near-field energy transfer. Through conservation of energy and reciprocity, we show that each body of susceptibility can emit and absorb radiation at enhanced rates bounded by , optimally mediated by near-field photon transfer proportional to across a separation distance . Dipole--dipole and dipole--plate structures approach restricted versions of the limit, but common large-area structures do not exhibit the material enhancement factor and thus fall short of the general limit. By contrast, we find that particle arrays interacting in an idealized Born approximation (i.e., neglecting multiple scattering) exhibit both enhancement factors, suggesting the possibility of orders-of-magnitude improvement beyond previous designs and the potential for radiative heat transfer to be comparable to conductive heat transfer through air at room temperature, and significantly greater at higher temperatures.
4 pages, 3 figures (text + references), plus 6 pages of Supp. Mat
References in corpus (8)
- Nonlocal optical response in metallic nanostructures
- Fluctuating surface-current formulation of radiative heat transfer for arbitrary geometries
- Heat transfer between nanoparticles: Thermal conductance for near-field interactions
- Fundamental Limits for Light Absorption and Scattering Induced by Cooperative Electromagnetic Coupling
- A diameter--bandwidth product limitation of isolated-object cloaking
- Near field radiative heat transfer between two nonlocal dielectrics
- Radiative energy and momentum transfer for various spherical shapes: a single sphere, a bubble, a spherical shell and a coated sphere
- A thermokinetic approach to radiative heat transfer at the nanoscale
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