International audiencend the Boltzmann transport equation. It is shown that: (1) a small difference between the permittivities of the substrate and superstrate of the film can generate giant propagation lengths and therefore remarkably enhances its thermal conductivity with respect to values obtained for a freestanding one. (2) The propagation of surface phonon-polaritons is present in a broad band of frequencies and exhibits its largest propagation lengths at the frequency where the absorption of energy is minimal. (3) The increase of the thermal conductivity of the film as its thickness decreases is higher when it is deposited on potassium bromide instead of being suspended in air. The difference in the thermal conductivity for these two ...
We present a calculation of the thermally generated electromagnetic flux propagating along the in-pl...
The phonon Boltzmann equation is solved numerically in order to study the phonon thermal conductivit...
International audienceWe analyze in detail the energy transport of surface phonon polaritons propaga...
International audiencend the Boltzmann transport equation. It is shown that: (1) a small difference ...
International audienceThe effects of the permittivity anisotropy and size of a nano thin film on its...
International audienceAs is well-known, the phonon and electron thermal conductivity of a thin film ...
International audienceThe effective thermal conductivity of a layered system due to the propagation ...
Thermal conduction becomes less efficient as structures scale down into submicron sizes since phonon...
We predict theoretically that the effective in-plane thermal conductivity of polar, amorphous thin f...
ABSTRACT We predict theoretically that the effective in-plane thermal conductivity of crystalline an...
International audienceEfficient heat dissipation in micro/nano electronics requires long-distance pr...
International audienceReduction of the phonon thermal conductivity of thin films as their thickness ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2007.This e...
Heat transport guided by the combined dynamics of surface phonon-polaritons (SPhPs) and phonons prop...
We present a calculation of the thermally generated electromagnetic flux propagating along the in-pl...
The phonon Boltzmann equation is solved numerically in order to study the phonon thermal conductivit...
International audienceWe analyze in detail the energy transport of surface phonon polaritons propaga...
International audiencend the Boltzmann transport equation. It is shown that: (1) a small difference ...
International audienceThe effects of the permittivity anisotropy and size of a nano thin film on its...
International audienceAs is well-known, the phonon and electron thermal conductivity of a thin film ...
International audienceThe effective thermal conductivity of a layered system due to the propagation ...
Thermal conduction becomes less efficient as structures scale down into submicron sizes since phonon...
We predict theoretically that the effective in-plane thermal conductivity of polar, amorphous thin f...
ABSTRACT We predict theoretically that the effective in-plane thermal conductivity of crystalline an...
International audienceEfficient heat dissipation in micro/nano electronics requires long-distance pr...
International audienceReduction of the phonon thermal conductivity of thin films as their thickness ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2007.This e...
Heat transport guided by the combined dynamics of surface phonon-polaritons (SPhPs) and phonons prop...
We present a calculation of the thermally generated electromagnetic flux propagating along the in-pl...
The phonon Boltzmann equation is solved numerically in order to study the phonon thermal conductivit...
International audienceWe analyze in detail the energy transport of surface phonon polaritons propaga...