• DocumentCode
    858785
  • Title

    Bending and orientational characteristics of long period gratings written in D-shaped optical fiber [directional bend sensors]

  • Author

    Allsop, T. ; Gillooly, A. ; Mezentsev, V. ; Earthgrowl-Gould, T. ; Neal, R. ; Webb, D.J. ; Bennion, I.

  • Author_Institution
    Photonics Res. Group, Aston Univ., Birmingham, UK
  • Volume
    53
  • Issue
    1
  • fYear
    2004
  • Firstpage
    130
  • Lastpage
    135
  • Abstract
    Long period gratings (LPGs) were written into a D-shaped single-mode fiber. These LPGs were subjected to a range of curvatures, and it was found that as curvature increased, there was increasingly strong coupling to certain higher order cladding modes without the usual splitting of the LPGs stopbands. A bend-induced stopband yielded a spectral sensitivity of 12.55 nm·m for curvature and 2.2×10-2 nm°C-1 for temperature. It was also found that the wavelength separation between adjacent bend-induced stopbands varied linearly as a function of curvature. Blue and red wavelength shifts of the stopbands were observed as the sensor was rotated around a fixed axis for a given curvature; thus, in principle, this sensor could be used to obtain bending and orientational information. The behavior of the stopbands was successfully modeled using a finite element approach.
  • Keywords
    bending; coupled mode analysis; curvature measurement; diffraction gratings; fibre optic sensors; finite element analysis; position measurement; spectral line shift; temperature measurement; D-shaped single-mode optical fiber; FEM; LPG curvature measurement; bend sensors; bend-induced stopband spectral sensitivity; bend-induced stopbands; blue wavelength shift; fiber bending characteristics; fiber orientational characteristics; higher order cladding mode coupling; long period gratings; red shift; sensor rotation; stopband wavelength separation; temperature measurement; Attenuation; Fabrication; Fiber gratings; Finite element methods; Optical attenuators; Optical fiber devices; Optical fiber sensors; Optical fibers; Refractive index; Temperature sensors;
  • fLanguage
    English
  • Journal_Title
    Instrumentation and Measurement, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9456
  • Type

    jour

  • DOI
    10.1109/TIM.2003.821508
  • Filename
    1259536