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Bragg grating photo-inscription in doped microstructured polymer optical fiber by 400 nm femtosecond laser pulses.

Authors :
Hu, X.
Woyessa, Getinet
Kinet, D.
Janting, Jakob
Nielsen, Kristian
Bang, Ole
Mégret, P.
Caucheteur, C.
Hu, X.
Woyessa, Getinet
Kinet, D.
Janting, Jakob
Nielsen, Kristian
Bang, Ole
Mégret, P.
Caucheteur, C.
Source :
Hu , X , Woyessa , G , Kinet , D , Janting , J , Nielsen , K , Bang , O , Mégret , P & Caucheteur , C 2016 , Bragg grating photo-inscription in doped microstructured polymer optical fiber by 400 nm femtosecond laser pulses. in Proceedings of 25th International Conference on Plastic Optical Fibers 2016 . 25th International Conference on Plastic Optical Fibres , Birmingham , United Kingdom , 13/09/2016 .
Publication Year :
2016

Abstract

In this paper, we report the manufacturing of high-quality endlessly single-mode doped microstructured poly(methyl methacrylate) (PMMA) optical fibers. Bragg gratings are photo-inscribed in such fibers by means of 400 nm femtosecond laser pulses through a 1060-nm-period uniform phase mask. Preliminary results show a rapid growing process of the reflection band. To preserve a good spectral shape, the photo-inscription process was limited to ~20 seconds, yielding an FBG reflectivity close to 40 %.

Details

Database :
OAIster
Journal :
Hu , X , Woyessa , G , Kinet , D , Janting , J , Nielsen , K , Bang , O , Mégret , P & Caucheteur , C 2016 , Bragg grating photo-inscription in doped microstructured polymer optical fiber by 400 nm femtosecond laser pulses. in Proceedings of 25th International Conference on Plastic Optical Fibers 2016 . 25th International Conference on Plastic Optical Fibres , Birmingham , United Kingdom , 13/09/2016 .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1032628351
Document Type :
Electronic Resource