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  4. Light scattering characterization of single-layer nanoporous SiO2 antireflection coating in visible light
 
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2020
Journal Article
Title

Light scattering characterization of single-layer nanoporous SiO2 antireflection coating in visible light

Abstract
Antireflective coatings are widely applied on transparent optical components to reduce reflections at surfaces. Nanoporous silica (NP SiO2) thin films with tailored refractive index properties are used as single-layer antireflective coatings providing nearly zero reflectivity. In this work, light scattering properties of nanoporous silica single-layer antireflective coatings are investigated in order to determine their optical quality by means of total scattering and detailed roughness analysis. Scattering and roughness characterization of the samples coated with different film thicknesses were realized to distinguish the influences of nanopores and surface roughness on scattering losses in the visible (VIS) spectral range. No significant correlation of scattering losses with the film thickness is found, showing negligible influence of the nanopores to the overall scattering properties compared with the dominating effect of interface roughness. Moreover, the scattering losses from coated fused silica glass were observed as low as 20 ppm (0.002%). It is confirmed that NP SiO2 single-layer antireflective coatings are suitable to be used in optics demanding extremely low scattering characteristics.
Author(s)
Sekman, Y.
Felde, N.
Ghazaryan, L.
Szeghalmi, A.
Schröder, S.
Journal
Applied optics  
DOI
10.1364/AO.59.00A143
Language
English
Fraunhofer-Institut für Angewandte Optik und Feinmechanik IOF  
Keyword(s)
  • antireflection coatings

  • film thickness

  • fused silica

  • light scattering

  • nanopores

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