• DocumentCode
    3846492
  • Title

    Bragg Grating Inscription in GeO $_2$-Doped Microstructured Optical Fibers

  • Author

    Thomas Geernaert;Martin Becker;Pawel Mergo;Tomasz Nasilowski;Jan Wojcik;Waclaw Urbanczyk;Manfred Rothhardt;Christoph Chojetzki;Hartmut Bartelt;Herman Terryn;Francis Berghmans;Hugo Thienpont

  • Author_Institution
    Institute for the Promotion of Innovation through Science and Technology in Flanders, (IWT-Vlaanderen)
  • Volume
    28
  • Issue
    10
  • fYear
    2010
  • fDate
    5/15/2010 12:00:00 AM
  • Firstpage
    1459
  • Lastpage
    1467
  • Abstract
    We present KrF excimer laser-induced dynamics of Bragg grating growths in GeO2 doped microstructured optical fibers. The studied fibers all have 6 rings of airholes in a hexagonal lattice and a GeO2 doped region in the center of the microstructure. We compare the growth rates of fiber Bragg gratings in the different microstructured fibers with UV grating inscription. The influence of the doping level, the airhole filling factor, the airhole pitch distance and the fiber orientation are investigated. We expand the range of microstructured optical fibers in which Bragg gratings can be inscribed, achieving reflection strengths that are useable for FBG-based sensing applications, even for doped regions with GeO2 concentrations as low as 1.36 mol% and 0.45 mol%.
  • Keywords
    "Bragg gratings","Fiber gratings","Optical fibers","Fiber lasers","Ring lasers","Lattices","Microstructure","Photonic crystal fibers","Doping","Filling"
  • Journal_Title
    Journal of Lightwave Technology
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/JLT.2010.2043414
  • Filename
    5419094