Broadband antireflection schemes for silicon surfaces based on the moth-eye principle and comprising arrays of subwavelength-scale pillars are applicable to solar cells, photodetectors, and stealth technologies and can exhibit very low reflectances. We show that rigorous coupled wave analysis can be used to accurately model the intricate reflectance behavior of these surfaces and so can be used to explore the effects of variations in pillar height, period, and shape. Low reflectance regions are identified, the extent of which are determined by the shape of the pillars. The wavelengths over which these low reflectance regions operate can be shifted by altering the period of the array. Thus the subtle features of the reflectance spectrum of a...
We demonstrate broadband and wide-angle antireflective surface nanostructuring in GaAs semiconductor...
The eyes and wings of some species of moth are covered with arrays of nanoscale features that dramat...
Trabajo presentado en el 13th International Conference on Concentrator Photovoltaics (CPV-13), celeb...
A key consideration in the design of any solar cell is the reduction of reflectance from the top sur...
We present a study of antireflective schemes and their operation over a full day. We compare simulat...
Nanostructured silicon moth-eye arrays for the purpose of antireflectivity in silicon solar cells we...
ABSTRACT: Nanostructured moth-eye arrays for antireflective surfaces in silicon solar cells are inve...
Providing antireflection in the visible spectrum is useful for a number of applications. Solar cells...
[[abstract]]Nature routinely produces nanostructured surfaces with useful properties, such as the se...
The moth-eye structure has been proposed several times as an antireflective coating to replace the s...
The photovoltaic solar energy industry has experienced substantial growth over the last few years an...
Reducing the reflection and improving the transmission or absorption of light from wide angles of in...
The eyes and wings of some species of moth are covered in arrays of subwavelength pillars that have ...
Backscattering from nanostructured surfaces greatly diminishes the efficacy of light trapping solar ...
For thin silicon solar cells, standard pyramidal textures cannot be used as antireflection structure...
We demonstrate broadband and wide-angle antireflective surface nanostructuring in GaAs semiconductor...
The eyes and wings of some species of moth are covered with arrays of nanoscale features that dramat...
Trabajo presentado en el 13th International Conference on Concentrator Photovoltaics (CPV-13), celeb...
A key consideration in the design of any solar cell is the reduction of reflectance from the top sur...
We present a study of antireflective schemes and their operation over a full day. We compare simulat...
Nanostructured silicon moth-eye arrays for the purpose of antireflectivity in silicon solar cells we...
ABSTRACT: Nanostructured moth-eye arrays for antireflective surfaces in silicon solar cells are inve...
Providing antireflection in the visible spectrum is useful for a number of applications. Solar cells...
[[abstract]]Nature routinely produces nanostructured surfaces with useful properties, such as the se...
The moth-eye structure has been proposed several times as an antireflective coating to replace the s...
The photovoltaic solar energy industry has experienced substantial growth over the last few years an...
Reducing the reflection and improving the transmission or absorption of light from wide angles of in...
The eyes and wings of some species of moth are covered in arrays of subwavelength pillars that have ...
Backscattering from nanostructured surfaces greatly diminishes the efficacy of light trapping solar ...
For thin silicon solar cells, standard pyramidal textures cannot be used as antireflection structure...
We demonstrate broadband and wide-angle antireflective surface nanostructuring in GaAs semiconductor...
The eyes and wings of some species of moth are covered with arrays of nanoscale features that dramat...
Trabajo presentado en el 13th International Conference on Concentrator Photovoltaics (CPV-13), celeb...