Fabrication of all-fiber bandpass filter using single fiber Bragg grating

被引:6
|
作者
Wei, ZX [1 ]
Qin, L [1 ]
Wang, QY [1 ]
Li, HP [1 ]
Zheng, W [1 ]
Zhang, YS [1 ]
机构
[1] Jilin Univ, Dept Elect Engn, Jilin, Peoples R China
关键词
all-fiber bandpass filter; fiber Bragg grating; strain gradient;
D O I
10.1016/S0030-4018(00)00540-X
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We analyze and experimentally demonstrate that both the bandwidth of the fiber Bragg grating (FBG)'s short wavelength loss and the bandwidth of the FBG's reflection increase with the increase of strain gradient along the length of the grating. Based on this phenomenon, we experimentally demonstrate a simple method of fabricating tunable all-fiber monochannel bandpass filter using a single strong FBG. A filter with a similar to 3.5 nm width stopband and a similar to 0.4 nm width passband is achieved in the standard single mode fiber. The strong short wavelength loss of FBG acts as a stopband on the short wavelength side, through which the incident light cannot pass because its core mode is coupled to the cladding mode. The reflection peak of FBG acts as a stopband on the long wavelength side, through which incident light cannot pass because the forward propagating core mode is coupled to backward propagating core mode. The gap between the reflection and the short wavelength loss acts as a passband, through which the light can pass with a low amount of loss. The strain gradient along the grating is used to improve the performance of the filter; it not only broadens the two stopbands but also reduces the width of the passband. (C) 2000 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:201 / 205
页数:5
相关论文
共 50 条
  • [31] Tunable wavelength filter using a Bragg grating fiber thinned by plasma etching
    Kumazaki, H
    Yamada, Y
    Nakamura, H
    Inaba, S
    Hane, K
    IEEE PHOTONICS TECHNOLOGY LETTERS, 2001, 13 (11) : 1206 - 1208
  • [32] Improving the detection accuracy in fiber Bragg grating sensors by using a wavelet filter
    Chan, C. C.
    Ni, N.
    Sun, J.
    JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 2007, 9 (08): : 2376 - 2379
  • [33] Simultaneous interrogation of fiber Bragg grating sensors using an acoustooptic tunable filter
    Boulet, C
    Webb, DJ
    Douay, M
    Niay, P
    IEEE PHOTONICS TECHNOLOGY LETTERS, 2001, 13 (11) : 1215 - 1217
  • [34] Evolution of optical fiber temperature during fiber Bragg grating fabrication using KrF excimer laser
    Nakamura, M
    Komatsu, C
    Masuda, Y
    Fujita, K
    Yamauchi, M
    Mizutani, Y
    Kimura, S
    Suzaki, Y
    Yokouchi, T
    Nakagawa, K
    Ejima, S
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS BRIEF COMMUNICATIONS & REVIEW PAPERS, 2004, 43 (01): : 147 - 151
  • [35] Simultaneous measurement of multiple parameters using a single fiber Bragg grating
    Kondiparthi, Mahesh
    INFRARED REMOTE SENSING AND INSTRUMENTATION XVIII, 2010, 7808
  • [36] Interferometric noise suppression in fiber Bragg grating sensors by using wavelet filter
    Chan, C. C.
    Ni, N.
    Sun, J.
    Chu, Y. C.
    Tang, Y.
    Poh, C. L.
    JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 2010, 12 (06): : 1241 - 1246
  • [37] Kalman filter for dynamic and static measurement of fiber Bragg grating
    Mao, Xuefeng
    Peng, Yuxuan
    Yuan, Tai
    Ye, Hao
    Tan, Yuting
    OPTICAL ENGINEERING, 2024, 63 (02)
  • [38] A high-resolution tunable fiber Bragg grating filter
    Tay, CM
    Tan, KM
    Tjin, SC
    Chan, CC
    Ngo, NQ
    Dong, XY
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2004, 42 (02) : 89 - 92
  • [39] Magneto-mechanical tuning of fiber Bragg grating filter
    Chan, CC
    Gong, JM
    Shi, CZ
    Hoo, YL
    Zhang, M
    Jin, W
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2002, 33 (02) : 73 - 74
  • [40] Influence of Grating Fabrication on Radiation Sensitivity of Fiber Bragg Gratings
    Lin, Song
    Jin, Jing
    Song, Ningfang
    Yang, Gongliu
    Jiang, Yuntian
    6TH INTERNATIONAL SYMPOSIUM ON ADVANCED OPTICAL MANUFACTURING AND TESTING TECHNOLOGIES: DESIGN, MANUFACTURING, AND TESTING OF SMART STRUCTURES, MICRO- AND NANO- OPTICAL DEVICES, AND SYSTEMS, 2012, 8418