We compute near-field radiative transfer between two spheres of unequal radii R1 and R2 such that R2 ≲ 40R1. For R2 = 40R1, the smallest gap to which we have been able to compute radiative transfer is d = 0.016R1. To accomplish these computations, we have had to modify existing methods for computing near-field radiative transfer between two spheres in the following ways: (1) exact calculations of coefficients of vector translation theorem are replaced by approximations valid for the limit d ≪ R1, and (2) recursion relations for a normalized form of translation coefficients are derived which enable us to replace computations of spherical Bessel and Hankel functions by computations of ratios of spherical Bessel or spherical Hankel functions. ...
International audienceNear-field radiative transfer is a promising way to significantly and simultan...
Heat radiation and near-field radiative heat transfer can be strongly manipulated by adjusting geome...
International audienceRadiative heat transfer (RHT) between two metallic nanoparticles clusters in b...
Radiative energy transfer between closely spaced bodies is known to be significantly larger than tha...
Though the dependence of near-field radiative transfer on the gap between two planar objects is well...
The dissertation focuses on the theoretical analysis of near-field electromagnetic wave effects in t...
We develop a small distance expansion for the radiative heat transfer between gently curved objects,...
Near-field radiation allows heat to propagate across a small vacuum gap at rates several orders of m...
Near-field force and energy exchange between two objects due to quantum electrodynamic fluctuations ...
We derive shape-independent limits to the spectral radiative heat transfer rate between two closely ...
It has been shown that the energy exchange between two objects can be greatly enhanced when the sepa...
The nature of thermal radiative transfer changes significantly as the nominal gap between two object...
For 75 years it has been known that radiative heat transfer can exceed far-field blackbody rates whe...
Near-field radiative heat transfer (NFRHT) between irregularly shaped dielectric particles made of S...
We use fluctuational electrodynamics to determine spectral emissivity and van der Waals contribution...
International audienceNear-field radiative transfer is a promising way to significantly and simultan...
Heat radiation and near-field radiative heat transfer can be strongly manipulated by adjusting geome...
International audienceRadiative heat transfer (RHT) between two metallic nanoparticles clusters in b...
Radiative energy transfer between closely spaced bodies is known to be significantly larger than tha...
Though the dependence of near-field radiative transfer on the gap between two planar objects is well...
The dissertation focuses on the theoretical analysis of near-field electromagnetic wave effects in t...
We develop a small distance expansion for the radiative heat transfer between gently curved objects,...
Near-field radiation allows heat to propagate across a small vacuum gap at rates several orders of m...
Near-field force and energy exchange between two objects due to quantum electrodynamic fluctuations ...
We derive shape-independent limits to the spectral radiative heat transfer rate between two closely ...
It has been shown that the energy exchange between two objects can be greatly enhanced when the sepa...
The nature of thermal radiative transfer changes significantly as the nominal gap between two object...
For 75 years it has been known that radiative heat transfer can exceed far-field blackbody rates whe...
Near-field radiative heat transfer (NFRHT) between irregularly shaped dielectric particles made of S...
We use fluctuational electrodynamics to determine spectral emissivity and van der Waals contribution...
International audienceNear-field radiative transfer is a promising way to significantly and simultan...
Heat radiation and near-field radiative heat transfer can be strongly manipulated by adjusting geome...
International audienceRadiative heat transfer (RHT) between two metallic nanoparticles clusters in b...