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High-sensitivity temperature sensor based on Bragg grating in BDK-doped photosensitive polymer optical fiber 被引量:2

High-sensitivity temperature sensor based on Bragg grating in BDK-doped photosensitive polymer optical fiber
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摘要 A single-mode polymer optical fiber (POF) with highly photosensitive core doped with benzil dimethyl ketal (BDK) is fabricated and used for writing Bragg grating through the two-beam interference method. The Bragg wavelength of the grating is about 1570 nm, while the full-width at half-maximum (FWHM) of the reflection peak is 0.3 nm. The temperature response of POF Bragg grating is theoretically analyzed and experimentally measured in contrast to silica optical fiber Bragg grating (FBG). The result shows that the temperature character of POF Bragg grating is negative, which is opposite to the silica optical FBG. The absolute value of the temperature response of POF Bragg grating is one order of magnitude higher than that of the silica optical FBG, making POF Bragg grating appear to be very attractive for constructing temperature sensors with high resolution. A single-mode polymer optical fiber (POF) with highly photosensitive core doped with benzil dimethyl ketal (BDK) is fabricated and used for writing Bragg grating through the two-beam interference method. The Bragg wavelength of the grating is about 1570 nm, while the full-width at half-maximum (FWHM) of the reflection peak is 0.3 nm. The temperature response of POF Bragg grating is theoretically analyzed and experimentally measured in contrast to silica optical fiber Bragg grating (FBG). The result shows that the temperature character of POF Bragg grating is negative, which is opposite to the silica optical FBG. The absolute value of the temperature response of POF Bragg grating is one order of magnitude higher than that of the silica optical FBG, making POF Bragg grating appear to be very attractive for constructing temperature sensors with high resolution.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2011年第2期8-10,共3页 中国光学快报(英文版)
基金 supported by the National Natural Science Foundation of China (Nos. 50703038, 50773075,21074123, and 50973101) the Chinese Academy of Sciences (Nos. kjcx3.syw.H02 and kjcx2-yw-m11) China Postdoctoral Science Foundation (No. 20100470038) the "Hundred Talents Program" of the Chinese Academy of Sciences
关键词 Fiber Bragg gratings Fiber optic sensors Light sensitive materials Optical fibers PHOTOSENSITIVITY SILICA Temperature sensors Fiber Bragg gratings Fiber optic sensors Light sensitive materials Optical fibers Photosensitivity Silica Temperature sensors
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  • 1A. D. Kersey, M. A. Davis, H. J. Patrcik, M. LeBlanc, K. P. Koo, C. G. Askins, M. A. Putnam, and E. J. Friebele, J. Lightwave Technol. 15, 1442 (1997).
  • 2J. Jung, H. Nam, B. Lee, J. O. Byun, and N. S. Kim, Appl. Opt. 38, 2752 (1999).
  • 3M. G. Xu, L. Dong, L. Reekie, J. A. Tucknott, and J. L. Cruz, Electron. Lett. 31, 823 (1995).
  • 4M. G. Xu, L. Reekie, Y. T. Chow, and J. P. Dakin, Electron. Lett. 29, 398 (1993).
  • 5Y. X. Jin, C. C. Chan, X. Y. Dong, and Y. F. Zhang, Opt. Commun. 282, 3905 (2009).
  • 6H. Zhao, J. Bao, and Y. Chen, Acta Opt. Sin. (in Chinese) 28, 1681 (2008).
  • 7Y. Miao, B. Liu, and Q. Zhao, Acta Opt. Sin. (in Chinese) 28, 2072 (2008).
  • 8T. L. Yeo, T. Sun, K. T. V. Grattan, D. Parry, R. Lade, and B. D. Powell, IEEE Sensors Journal 5, 1082 (2005).
  • 9Y.-Q. Liu, Z.-Y. Guo, Z.-G. Liu, D.-H. Zhao, C.-F. Ge, and X.-Y. Dong, Chin. Phys. Lett. 17, 115 (2000).
  • 10W.-G. Jung, S.-W. Kim, K.-T. Kim, E.-S. Kim, and S.-W. Kan, IEEE Photon. Technol. Lett. 13, 1209 (2001).

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