International audienceHeat can be exchanged between two surfaces through emission and absorption of thermal radiation. It has been predicted theoretically that for distances smaller than the peak wavelength of the blackbody spectrum, radiative heat transfer can be increased by the contribution of evanescent waves(1-8). This contribution can be viewed as energy tunnelling through the gap between the surfaces. Although these effects have already been observed(9-14), a detailed quantitative comparison between theory and experiments in the nanometre regime is still lacking. Here, we report an experimental setup that allows measurement of conductance for gaps varying between 30 nm and 2.5 mu m. Our measurements pave the way for the design of sub...
In order to continue the progress of nanotechnology in producing effective and efficient mechanical,...
International audienceStefan-Boltzmann's law indicates that far-field blackbody radiation scales at ...
In this letter, we measured the nanoscale thermal radiation between a microsphere and a substrate wh...
International audienceHeat can be exchanged between two surfaces through emission and absorption of ...
International audienceHeat can be exchanged between two surfaces through emission and absorption of ...
International audienceHeat can be exchanged between two surfaces through emission and absorption of ...
International audienceHeat can be exchanged between two surfaces through emission and absorption of ...
International audienceHeat can be exchanged between two surfaces through emission and absorption of ...
International audienceEnergy transport theories are being revisited at the nanoscale, as macroscopic...
Near-field radiative heat transfer (NFRHT) between planar metallic surfaces was computationally expl...
Understanding radiative thermal transport is vitally important in a host of scientific fields, from ...
Understanding radiative thermal transport is vitally important in a host of scientific fields, from ...
Near-field radiative heat transfer (NFRHT) between planar metallic surfaces was computationally expl...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Cata...
In order to continue the progress of nanotechnology in producing effective and efficient mechanical,...
In order to continue the progress of nanotechnology in producing effective and efficient mechanical,...
International audienceStefan-Boltzmann's law indicates that far-field blackbody radiation scales at ...
In this letter, we measured the nanoscale thermal radiation between a microsphere and a substrate wh...
International audienceHeat can be exchanged between two surfaces through emission and absorption of ...
International audienceHeat can be exchanged between two surfaces through emission and absorption of ...
International audienceHeat can be exchanged between two surfaces through emission and absorption of ...
International audienceHeat can be exchanged between two surfaces through emission and absorption of ...
International audienceHeat can be exchanged between two surfaces through emission and absorption of ...
International audienceEnergy transport theories are being revisited at the nanoscale, as macroscopic...
Near-field radiative heat transfer (NFRHT) between planar metallic surfaces was computationally expl...
Understanding radiative thermal transport is vitally important in a host of scientific fields, from ...
Understanding radiative thermal transport is vitally important in a host of scientific fields, from ...
Near-field radiative heat transfer (NFRHT) between planar metallic surfaces was computationally expl...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Cata...
In order to continue the progress of nanotechnology in producing effective and efficient mechanical,...
In order to continue the progress of nanotechnology in producing effective and efficient mechanical,...
International audienceStefan-Boltzmann's law indicates that far-field blackbody radiation scales at ...
In this letter, we measured the nanoscale thermal radiation between a microsphere and a substrate wh...