It is shown that a graphene layer on top of a dielectric slab can dramatically influence the ability of this dielectric for radiative heat exchange turning a poor heat emitter/absorber into a good one and vice versa. The effect of graphene is related to thermally excited plasmons. The frequency of these resonances lies in the terahertz region and can be tuned by varying the Fermi level through doping or gating. It makes possible the fast modulation of the heat flux by electrical means, which opens up new possibilities for very fast manipulations with the heat flux. The heat transfer between two dielectrics covered with graphene can be larger than that between best known materials and becomes especially efficient below the room temperature
International audienceIn this paper, magnetoplasmonic manipulation of near-field radiative heat tran...
We study the near-field radiative energy transfer between graphene and an amorphous SiO2 substrate. ...
International audienceWe study the radiative heat transfer between multilayer structures made by a p...
We theoretically demonstrate a near-field radiative thermal switch based on thermally excited surfac...
It is shown that thermally excited plasmon- polariton modes can strongly mediate, enhance, and tune ...
Radiative heat transfer is the mechanism by which objects, in absence of conduction and convection, ...
<p>As one emerging plasmonic material, graphene can support surface plasmons at infrared and teraher...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
We theoretically demonstrate a near-field radiative thermal switch based on thermally excited surfac...
A graphene layer on top of a dielectric can dramatically influence the ability of the material for r...
International audienceThe radiative heat transfer between two dielectrics can be strongly enhanced i...
In this Letter, the enhanced and directional radiation in a wide terahertz (THz) frequency range in ...
International audienceWe present a thermal device based on the near-field interaction between two su...
It is known that the surface plasmons (SPs) supported by graphene can be strongly coupled with elect...
We present a thermal device based on the near-field interaction between two substrates made of a pol...
International audienceIn this paper, magnetoplasmonic manipulation of near-field radiative heat tran...
We study the near-field radiative energy transfer between graphene and an amorphous SiO2 substrate. ...
International audienceWe study the radiative heat transfer between multilayer structures made by a p...
We theoretically demonstrate a near-field radiative thermal switch based on thermally excited surfac...
It is shown that thermally excited plasmon- polariton modes can strongly mediate, enhance, and tune ...
Radiative heat transfer is the mechanism by which objects, in absence of conduction and convection, ...
<p>As one emerging plasmonic material, graphene can support surface plasmons at infrared and teraher...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
We theoretically demonstrate a near-field radiative thermal switch based on thermally excited surfac...
A graphene layer on top of a dielectric can dramatically influence the ability of the material for r...
International audienceThe radiative heat transfer between two dielectrics can be strongly enhanced i...
In this Letter, the enhanced and directional radiation in a wide terahertz (THz) frequency range in ...
International audienceWe present a thermal device based on the near-field interaction between two su...
It is known that the surface plasmons (SPs) supported by graphene can be strongly coupled with elect...
We present a thermal device based on the near-field interaction between two substrates made of a pol...
International audienceIn this paper, magnetoplasmonic manipulation of near-field radiative heat tran...
We study the near-field radiative energy transfer between graphene and an amorphous SiO2 substrate. ...
International audienceWe study the radiative heat transfer between multilayer structures made by a p...