International audienceA few tens of nanometre thick ultrathin materials may suffer from a very low absorption at their band edges. In this work, we investigate a photonic crystal (PC) made of a lowcost, transparent patterned silicon nitride (SiN x ) layer, conformally covered with an ultrathin active layer (e.g., 20 nm TiO 2 ) in view of its use in various applications such as photocatalysis. A fair estimation of the absorption enhancement, considering the volume of the active material, is calculated using RCWA. A remarkable enhancement (more than ten-folds) in absorptance in the near UV range and a very high transmittance over the visible range are observed. A detailed modal analysis of the structures-of-interest unravels the Light Trappin...
Future high-energy physics (HEP) experiments as well as next generation medical imaging applications...
Photon management has enabled a true revolution in the development of high-performance semiconductor...
International audienceWe propose a photovoltaic solar cell design based on a 100 nm thick absorbing ...
International audienceA few tens of nanometre thick ultrathin materials may suffer from a very low a...
We report the design and optimization of photonic crystal (PhC) structures within a GaAs or InAs abs...
6 pages. SPIE Photonics Europe paperThe absorption of thin hydrogenated amorphous silicon layers can...
We report on the fabrication and optical characterization of photonic crystal cavities for visible w...
We study the light trapping efficiency of a bidimensional photonic crystal (PC) integrated in a clas...
The effects of having a nanopatterned photonic crystal (PC) structure in the surface of a solar cell...
Due to an increase of human activity, an increase health risk has emerged from the presence of pollu...
International audiencePhoton management has enabled a true revolution in the development of high‐per...
The photovoltaic technology is pursuing its constant effort for lowering the price of the electricit...
We report organic solar cells with a photonic crystal nanostructure embossed in the photoactive bulk...
In order to conquer the challenges in the current technology to couple a dye-sensitized solar cell (...
Thick wafer-silicon is the dominant solar cell technology. It is of great interest to develop ultra-...
Future high-energy physics (HEP) experiments as well as next generation medical imaging applications...
Photon management has enabled a true revolution in the development of high-performance semiconductor...
International audienceWe propose a photovoltaic solar cell design based on a 100 nm thick absorbing ...
International audienceA few tens of nanometre thick ultrathin materials may suffer from a very low a...
We report the design and optimization of photonic crystal (PhC) structures within a GaAs or InAs abs...
6 pages. SPIE Photonics Europe paperThe absorption of thin hydrogenated amorphous silicon layers can...
We report on the fabrication and optical characterization of photonic crystal cavities for visible w...
We study the light trapping efficiency of a bidimensional photonic crystal (PC) integrated in a clas...
The effects of having a nanopatterned photonic crystal (PC) structure in the surface of a solar cell...
Due to an increase of human activity, an increase health risk has emerged from the presence of pollu...
International audiencePhoton management has enabled a true revolution in the development of high‐per...
The photovoltaic technology is pursuing its constant effort for lowering the price of the electricit...
We report organic solar cells with a photonic crystal nanostructure embossed in the photoactive bulk...
In order to conquer the challenges in the current technology to couple a dye-sensitized solar cell (...
Thick wafer-silicon is the dominant solar cell technology. It is of great interest to develop ultra-...
Future high-energy physics (HEP) experiments as well as next generation medical imaging applications...
Photon management has enabled a true revolution in the development of high-performance semiconductor...
International audienceWe propose a photovoltaic solar cell design based on a 100 nm thick absorbing ...