Near-field thermal radiative exchange between two objects is typically more effective than the far-field thermal radiative exchange as the heat flux can increase up to several orders higher in magnitudes due to tunneling of evanescent waves. Such an interesting phenomenon has started to gain its popularity in nanotechnology, especially in nano-gap thermophotovoltaic systems and near-field radiative cooling of micro-/nano-devices. Here, we explored the existence of thermal gradient within an n-doped silicon thin film when it is subjected to intensive near-field thermal radiative heating. The near-field radiative power density deposited within the film is calculated using the Maxwell equations combined with fluctuational electrodynamics. A ph...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
We investigate the thermal radiation and thermal near-field energy density of a metal-coated semi-in...
International audienceAbstract Bringing bodies close together at sub-micron distances can drasticall...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Nanoscale phonon transport within silicon structures subjected to internal heat generation was explo...
Energy transport across thin silicon films pair with the vacuum gap at the films interface is studie...
Energy transport across thin silicon films pair with the vacuum gap at the films interface is studie...
We demonstrate the coexistence of different near-field thermal radiation regimes between two layers ...
Nanoscale phonon transport within silicon structures subjected to internal heat generation was explo...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
This dissertation focuses on near-field radiative transfer, which can be defined as the discipline c...
Near-field radiative transfer is a promising way to significantly and simultaneously enhance both th...
This dissertation focuses on near-field radiative transfer, which can be defined as the discipline c...
Near field thermal radiation is the enhancement of thermal radiation by photon tunnelling when the s...
Near-field thermal radiation which can exceed blackbody radiation by several orders of magnitude has...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
We investigate the thermal radiation and thermal near-field energy density of a metal-coated semi-in...
International audienceAbstract Bringing bodies close together at sub-micron distances can drasticall...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Nanoscale phonon transport within silicon structures subjected to internal heat generation was explo...
Energy transport across thin silicon films pair with the vacuum gap at the films interface is studie...
Energy transport across thin silicon films pair with the vacuum gap at the films interface is studie...
We demonstrate the coexistence of different near-field thermal radiation regimes between two layers ...
Nanoscale phonon transport within silicon structures subjected to internal heat generation was explo...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
This dissertation focuses on near-field radiative transfer, which can be defined as the discipline c...
Near-field radiative transfer is a promising way to significantly and simultaneously enhance both th...
This dissertation focuses on near-field radiative transfer, which can be defined as the discipline c...
Near field thermal radiation is the enhancement of thermal radiation by photon tunnelling when the s...
Near-field thermal radiation which can exceed blackbody radiation by several orders of magnitude has...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
We investigate the thermal radiation and thermal near-field energy density of a metal-coated semi-in...
International audienceAbstract Bringing bodies close together at sub-micron distances can drasticall...