Aperiodic photonic crystals can open up novel routes for more efficient photon management due to increased degrees of freedom in their design along with the unique properties brought about by the long-range aperiodic order as compared to their periodic counterparts. In this work we first describe the fundamental notions underlying the idea of thermal emission/absorption control on the basis of the systematic use of aperiodic multilayer designs in photonic quasicrystals. Then, we illustrate the potential applications of this approach in order to enhance the performance of daytime radiative coolers and solar thermoelectric energy generators
Passive radiative cooling has recently received renewed interest because of its unprecedented capabi...
The manipulation of photons, especially the control of spontaneous emission, has become a core area ...
Photonic crystals are materials that are periodically structured on an optical length scale. It was ...
Aperiodic photonic crystals can open up novel routes for more efficient photon management due to inc...
We have analyzed thermal emission from one-dimensional metallodielectric periodic structures using a...
After decades of intense studies focused on cryogenic and room temperature nanophotonics, scientific...
Thermal emission is a ubiquitous phenomenon required in many applications, including thermophotovolt...
Nanophotonic engineering of light-matter interaction at subwavelength scale allows thermal radiation...
Active control of thermal transport is of significant interest for a wide range of applications, suc...
The emergence of multilayer metamaterials in the research field of enhancing spontaneous emission ra...
This dissertation describes a theoretical and experimental study on coherent thermal emission from t...
In this dissertation, we begin with a brief introduction to nanophotonics. In particular, we will fo...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2010.Cataloged from PDF ve...
We present a microscopic theory of thermal emission from finite-sized photonic crystals and show tha...
Thermal emission is a ubiquitous and fundamental process by which all objects at non-zero temperatur...
Passive radiative cooling has recently received renewed interest because of its unprecedented capabi...
The manipulation of photons, especially the control of spontaneous emission, has become a core area ...
Photonic crystals are materials that are periodically structured on an optical length scale. It was ...
Aperiodic photonic crystals can open up novel routes for more efficient photon management due to inc...
We have analyzed thermal emission from one-dimensional metallodielectric periodic structures using a...
After decades of intense studies focused on cryogenic and room temperature nanophotonics, scientific...
Thermal emission is a ubiquitous phenomenon required in many applications, including thermophotovolt...
Nanophotonic engineering of light-matter interaction at subwavelength scale allows thermal radiation...
Active control of thermal transport is of significant interest for a wide range of applications, suc...
The emergence of multilayer metamaterials in the research field of enhancing spontaneous emission ra...
This dissertation describes a theoretical and experimental study on coherent thermal emission from t...
In this dissertation, we begin with a brief introduction to nanophotonics. In particular, we will fo...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2010.Cataloged from PDF ve...
We present a microscopic theory of thermal emission from finite-sized photonic crystals and show tha...
Thermal emission is a ubiquitous and fundamental process by which all objects at non-zero temperatur...
Passive radiative cooling has recently received renewed interest because of its unprecedented capabi...
The manipulation of photons, especially the control of spontaneous emission, has become a core area ...
Photonic crystals are materials that are periodically structured on an optical length scale. It was ...