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Enhanced radiative heat transfer between nanostructured gold plates
Guérout R., Lussange J., Rosa F.S.S., Hugonin J.-P., Dalvit D.A.R., Greffet J.-J., Lambrecht A., Reynaud S.
Physical Review B 85 (2012) 180301(R) - http://hal.archives-ouvertes.fr/hal-00677390
Article in peer-reviewed journal
Physics/Physics/Optics
Enhanced radiative heat transfer between nanostructured gold plates
R. Guérout 1, J. Lussange 1, F. S. S. Rosa 2, Jean-Paul Hugonin 2, D. A. R. Dalvit 3, Jean-Jacques Greffet () 2, A. Lambrecht 1, S. Reynaud 1
1:  Laboratoire Kastler Brossel (LKB (Jussieu))
http://www.lkb.ens.fr
CNRS : UMR8552 – Université Pierre et Marie Curie (UPMC) - Paris VI – Ecole normale supérieure de Paris - ENS Paris
Case 74 - Tour 12, 4 place Jussieu, F-75252 Paris CEDEX 05
France
2:  Laboratoire Charles Fabry de l'Institut d'Optique (LCFIO)
http://www.institutoptique.fr/
Institut d'Optique Graduate School (IOGS) – CNRS : UMR8501 – Université Paris XI - Paris Sud
2, avenue Fresnel 91127 PALAISEAU cedex
France
3:  Theorical Division (LANL)
Los Alamos National Laboratory,
Los Alamos, NM 87545
United States
lcf-naphel
We compute the radiative heat transfer between nanostructured gold plates in the framework of the scattering theory. We predict an enhancement of the heat transfer as we increase the depth of the corrugations while keeping the distance of closest approach fixed. We interpret this effect in terms of the evolution of plasmonic and guided modes as a function of the grating's geometry.
English
2012-03-07

Physical Review B
international
2012-05-24
85
180301(R)

LKB-FQR

Fulltext link: 
http://fr.arXiv.org/abs/1203.1496