DocumentCode :
675211
Title :
Beam propagation in all-glass nanostructured gradient index microlenses
Author :
Buczynski, Ryszard ; Waddie, Andrew J. ; Nowosielski, Jedrzej ; Filipkowski, A. ; Kujawa, Ireneusz ; Pysz, Dariusz ; Stepien, Ryszard ; Taghizadeh, Mohammad R.
Author_Institution :
Inst. of Electron. Mater. Technol., Warsaw, Poland
fYear :
2013
fDate :
27-30 Oct. 2013
Firstpage :
1
Lastpage :
2
Abstract :
We demonstrate the feasibility of using the nanostructured micro-optics technology to create a large diameter quantized elliptical microlens. Nanostructured gradient index elements have discrete internal structure with feature sizes much smaller than the wavelength of the incident light. Standard methods of GRIN microlens fabrication suffer from limited gadient value as well as from limited accuracy of gradient control. The nanostructured micro-optics fabrication technology, which exploits the techniques used in the fabrication of photonic crystal fibre, can be used to create a wide range of nanostructured gradient index micro-optical components. In this paper we demonstrate the feasibility of using the nanostructured micro-optics technology to create a 20-100 μm diameter quantized elliptical and spherical microlens.
Keywords :
gradient index optics; light propagation; microlenses; nanofabrication; nanophotonics; nanostructured materials; optical glass; silicon compounds; GRIN microlens fabrication; SiO2; all-glass nanostructured gradient index microlenses; beam propagation; discrete internal structure; nanostructured micro-optics technology; photonic crystal fibre; quantized elliptical microlens; quantized spherical microlens; size 20 mum to 100 mum; Glass; Indexes; Lenses; Measurement by laser beam; Microoptics; Optical fibers; Preforms;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microoptics Conference (MOC), 2013 18th
Conference_Location :
Tokyo
Type :
conf
Filename :
6715105
Link To Document :
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