Thermal radiative energy transfer between closely spaced surfaces has been analyzed in the past and shown not to obey the laws of classical radiation heat transfer owing to evanescent waves and, more recently, electromagnetic surface modes. We have analyzed the energy transfer between layered media, one of the layers being the thermal source, using a Green’s functions method and the fluctuation-dissipation theorem. Based on the analysis, we propose a structure that can utilize the surface modes to increase the power density and efficiency of low temperature thermophotovoltaic generators. © 2003 American Institute of Physics
A graphene layer on top of a dielectric can dramatically influence the ability of the material for r...
A graphene layer on top of a dielectric can dramatically influence the ability of the material for r...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
This dissertation focuses on near-field radiative transfer, which can be defined as the discipline c...
This dissertation focuses on near-field radiative transfer, which can be defined as the discipline c...
abstract: It is well known that radiative heat transfer rate can exceed that between two blackbodies...
AbstractThermal radiation is generally assumed to be both spatially and temporally incoherent. In th...
The existence of surface waves on materials like metals, doped semiconductors, polar materials or ph...
The existence of surface waves on materials like metals, doped semiconductors, polar materials or ph...
The existence of surface waves on materials like metals, doped semiconductors, polar materials or ph...
The existence of surface waves on materials like metals, doped semiconductors, polar materials or ph...
Understanding energy transfer via near-field thermal radiation is critical for the future advances o...
A graphene layer on top of a dielectric can dramatically influence the ability of the material for r...
A graphene layer on top of a dielectric can dramatically influence the ability of the material for r...
A graphene layer on top of a dielectric can dramatically influence the ability of the material for r...
A graphene layer on top of a dielectric can dramatically influence the ability of the material for r...
A graphene layer on top of a dielectric can dramatically influence the ability of the material for r...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
This dissertation focuses on near-field radiative transfer, which can be defined as the discipline c...
This dissertation focuses on near-field radiative transfer, which can be defined as the discipline c...
abstract: It is well known that radiative heat transfer rate can exceed that between two blackbodies...
AbstractThermal radiation is generally assumed to be both spatially and temporally incoherent. In th...
The existence of surface waves on materials like metals, doped semiconductors, polar materials or ph...
The existence of surface waves on materials like metals, doped semiconductors, polar materials or ph...
The existence of surface waves on materials like metals, doped semiconductors, polar materials or ph...
The existence of surface waves on materials like metals, doped semiconductors, polar materials or ph...
Understanding energy transfer via near-field thermal radiation is critical for the future advances o...
A graphene layer on top of a dielectric can dramatically influence the ability of the material for r...
A graphene layer on top of a dielectric can dramatically influence the ability of the material for r...
A graphene layer on top of a dielectric can dramatically influence the ability of the material for r...
A graphene layer on top of a dielectric can dramatically influence the ability of the material for r...
A graphene layer on top of a dielectric can dramatically influence the ability of the material for r...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...