Thermal effects on the transmission spectra of long-period fiber gratings

被引:0
|
作者
Ng, MN [1 ]
Chiang, KS [1 ]
机构
[1] City Univ Hong Kong, Optoelect Res Ctr, Hong Kong, Hong Kong, Peoples R China
关键词
long-period fiber grating; optical fiber filter; optical fiber sensor; thermal-optic effect in fiber; fiber dispersion;
D O I
10.1117/12.481212
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
A detailed theoretical and experimental analysis of the thermal effects on the transmission spectra of long-period fiber gratings is presented. We show that the temperature sensitivity of the resonance wavelength of the grating is proportional to a modal dispersion factor of the fiber and the difference of the thermo-optic coefficients of the core and the cladding of the fiber. To facilitate our study, we derive a simple, accurate analytical formula for the calculation of the modal dispersion factor. Our formula shows explicitly that the temperature sensitivity of the resonance wavelength can be greatly enhanced by maximizing this factor with a suitable cladding mode. We also show explicitly that the temperature sensitivity of the strength of the grating is mainly determined by the coupling coefficient of the grating and the temperature sensitivity of the resonance wavelength. A good agreement between our theoretical and experimental results is obtained. Our results are useful for the design and the packaging of devices and sensors based on long-period fiber gratings.
引用
收藏
页码:154 / 165
页数:12
相关论文
共 50 条
  • [41] Step-changed long-period fiber gratings
    Guan, BO
    Zhang, AP
    Tam, HY
    Chan, HLW
    Choy, CL
    Tao, XM
    Demokan, MS
    IEEE PHOTONICS TECHNOLOGY LETTERS, 2002, 14 (05) : 657 - 659
  • [42] Long-period fiber gratings based on periodic microbends
    Hwang, IK
    Yun, SH
    Kim, BY
    OPTICS LETTERS, 1999, 24 (18) : 1263 - 1265
  • [43] Discretized superimposed optical fiber long-period gratings
    Trono, Cosimo
    Valeri, Federico
    Baldini, Francesco
    OPTICS LETTERS, 2020, 45 (04) : 807 - 810
  • [44] Analysis of two parallel long-period fiber gratings
    Chiang, KS
    Chan, FYM
    Ng, MN
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 2004, 22 (05) : 1358 - 1366
  • [45] Tunable mechanically induced long-period fiber gratings
    Savin, S
    Digonnet, MJF
    Kino, GS
    Shaw, HJ
    OPTICS LETTERS, 2000, 25 (10) : 710 - 712
  • [46] Ion beams tailor long-period fiber gratings
    Carts-Powell, Y.
    2001, PennWell Publishing Co. (37):
  • [47] Dependence on grating length of transmission spectra of long-period fiber bragg grating
    Sato Y.
    Yokouchi T.
    Iwata H.
    Suzaki Y.
    Ejima S.
    Zairyo/Journal of the Society of Materials Science, Japan, 2010, 59 (03) : 239 - 242
  • [48] Random period arc-induced long-period fiber gratings
    Martinez-Rios, A.
    Torres-Gomez, I.
    Monzon-Hernandez, D.
    Salceda-Delgado, G.
    Duran-Ramirez, V. M.
    Anzueto-Sanchez, G.
    OPTICS AND LASER TECHNOLOGY, 2012, 44 (04): : 1176 - 1179
  • [49] Reduction of the Polarization-Dependent Loss of Long-Period Fiber Gratings by Thermal Heating
    S. T. Oh
    S. Y. Chang
    W. T. Han
    U. C. Paek
    Y. Chung
    光学学报, 2003, (S1) : 229 - 230
  • [50] Novel optical fiber connector using long-period fiber gratings
    Eom, TJ
    Lee, BH
    OPTICAL DEVICES FOR FIBER COMMUNICATION III, 2002, 4638 : 99 - 106