Radiative thermal transport of metamaterials has begun to play a significant role in thermal science and has great engineering applications. When the key features of structures become comparable to the thermal wavelength at a particular temperature, a narrowband or wideband of wavelengths can be created or shifted in both the emission and reflection spectrum of nanoscale metamaterials. Due to the near-field effect, the phenomena of radiative wavelength selectivity become significant. These effects show strong promise for applications in thermophotovoltaic energy harvesting, nanoscale biosensing, and increased energy efficiency through radiative cooling in the near future. This review paper summarizes the recent progress and outlook of both ...
abstract: Recently, nanostructured metamaterials have attracted lots of attentions due to its tunabl...
Hyperbolic metamaterials (HMM) are of great interest due to their ability to break the diffraction l...
Global warming causes temperature increase of the Earth. The efforts to reduce energy consumption ...
Radiative thermal transport of metamaterials has begun to play a significant role in thermal science...
All substances above zero kelvin temperature emit fluctuating electromagnetic waves due to the rando...
Although blackbody radiation described by Planck's law is commonly regarded as the maximum of therma...
Micro/nano scale radiative transport phenomena present new opportunities to design spectrally select...
International audienceEnergy transport theories are being revisited at the nanoscale, as macroscopic...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Micro/nanoscale thermal radiation is of great importance in advanced energy systems, nanomanufacturi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Th...
Understanding energy transfer via near-field thermal radiation is critical for the future advances o...
We demonstrate in this work that the use of metasurfaces provides a viable strategy to largely tune ...
International audienceStefan-Boltzmann's law indicates that far-field blackbody radiation scales at ...
Thermal emission is a ubiquitous and fundamental process by which all objects at non-zero temperatur...
abstract: Recently, nanostructured metamaterials have attracted lots of attentions due to its tunabl...
Hyperbolic metamaterials (HMM) are of great interest due to their ability to break the diffraction l...
Global warming causes temperature increase of the Earth. The efforts to reduce energy consumption ...
Radiative thermal transport of metamaterials has begun to play a significant role in thermal science...
All substances above zero kelvin temperature emit fluctuating electromagnetic waves due to the rando...
Although blackbody radiation described by Planck's law is commonly regarded as the maximum of therma...
Micro/nano scale radiative transport phenomena present new opportunities to design spectrally select...
International audienceEnergy transport theories are being revisited at the nanoscale, as macroscopic...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Micro/nanoscale thermal radiation is of great importance in advanced energy systems, nanomanufacturi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Th...
Understanding energy transfer via near-field thermal radiation is critical for the future advances o...
We demonstrate in this work that the use of metasurfaces provides a viable strategy to largely tune ...
International audienceStefan-Boltzmann's law indicates that far-field blackbody radiation scales at ...
Thermal emission is a ubiquitous and fundamental process by which all objects at non-zero temperatur...
abstract: Recently, nanostructured metamaterials have attracted lots of attentions due to its tunabl...
Hyperbolic metamaterials (HMM) are of great interest due to their ability to break the diffraction l...
Global warming causes temperature increase of the Earth. The efforts to reduce energy consumption ...