• Acta Optica Sinica
  • Vol. 29, Issue 10, 2665 (2009)
Yu Xiujuan1、2、*, Zhang Min1, Wang Liwei1, Lei Ming1, and Liao Yanbiao1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/aos20092910.2665 Cite this Article Set citation alerts
    Yu Xiujuan, Zhang Min, Wang Liwei, Lei Ming, Liao Yanbiao. Characteristics of Long-Period Optical Fiber Grating with High Refractive Index nm-Thick Film Overlay[J]. Acta Optica Sinica, 2009, 29(10): 2665 Copy Citation Text show less
    References

    [1] D. D. Davis,T. K. Gaylord,E. N. Glytsis et al.. Very-high-temperature stable CO2-laser-induced long-period fibre gratings[J]. Electron. Lett.,1999,35(9):40-742

    [2] G. Humbert,A. Malki. Temperature characterization of long-period fiber gratings fabricated with electric arc discharge[C]. SPIE,2001,4579:176-181

    [3] M. Yokota,H. Oka,T. Yoshino. Mechanically induced long period fiber grating and its application for distributed sensing[C]. SPIE,2002,1:35-138

    [4] J. H. Chong,P. Shum,H. Haryono et al.. Measurements of refractive index sensitivity using long-period grating refracto meter [J]. Opt. Commun.,2004,229(1-6):65-69

    [5] J. F. Ding,A. P. Zhang. Fiber-taper seeded long-period grating pair as a highly sensitive refractive-index sensor [J]. IEEE Photonics Technol. Lett.,2005,17(6):1247-1249

    [6] X. K. Zeng,Y. J. Rao,Y. P. Wang et al.. Transverse load,static strain,temperature and vibration measurement using a cascaded FBG/EFPI/LPFG sensor system[C]. Proc.OFS,2002,1:199-202

    [7] S. W. James,S. Khaliq,R. P. Tatam. Fiber-optic liquid-level sensor using long period grating [J]. Opt. Lett.,2001,26(16):127-130

    [8] J. L. Elster. Long Period Grating-Based pH Sensors for Corrosion Monitoring[D]. Blacksburg:Faculty of the Virginia Polytechnic Institute and State Vniversity,1999

    [9] Y. Liu,L. W. Wang,M. Zhang et al.. Long-period grating relative humidity sensor with hydrogel coating[J]. IEEE Photon. Technol. Lett.,2007,19(12):880-882

    [10] Zhao Hongxia,Bao Jilong,Chen Ying. Bending sensing rules for long-period fiber gratings[J]. Acta Optica Sinica,2008,28(9):1681-1685

    [11] Zhao Hongxia,Bao Jilong,Chen Ying. Effect of bending curvature on transmission spectra of long period fiber gratings [J]. Chinese J. Lasers,2008,35(5):722-755

    [12] H. J. Patrick,A. D. Kersey,F. Bucholtz. Analysis of the response of long period fiber gratings to external index of refraction [J]. J. Lightwave Technol.,1998,16(9):1606-1611

    [13] N. D. Rees,S. W. James,R. P. Tatam et al.. Optical fiber long-period gratings with langmuir-blodgett thin-film overlays [J]. Opt. Lett.,2002,27(9),686-688

    [14] I. Del Villar,I. R. Matias,F. J. Arregui et al.. Optimization of sensitivity in long period fiber gratings with overlay deposition [J]. Opt. Express,2005,13(1):56-69

    [15] A. Cusano,A. Iadicicco,P.Pilla et al.. Cladding mode reorganization in high-refractive index-coated long-period gratings:effects on the refractive-index sensitivity[J]. Opt. Lett.,2005,30(19):2356-2358

    [16] C. Tsao. Optical Fiber Waveguide Analysis [M]. NewYork:Oxford University Press,1992

    [17] I. Del Villar,M. Achaerandio,I. R. Matías et al.. Deposition of an overlay with electrostatic selfassembly method in long period fiber gratings [J]. Opt. Lett.,2005,30(7):720-722

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    Yu Xiujuan, Zhang Min, Wang Liwei, Lei Ming, Liao Yanbiao. Characteristics of Long-Period Optical Fiber Grating with High Refractive Index nm-Thick Film Overlay[J]. Acta Optica Sinica, 2009, 29(10): 2665
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