Chinese Journal of Lasers, Volume. 40, Issue s1, 105005(2013)

Research on Sensing Technologies Based on Optical Micro-Nano Fiber Evanescent Field

Song Zhangqi*, Wei Zhengtong, Zhang Xueliang, Yu Yang, and Meng Zhou
Author Affiliations
  • [in Chinese]
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    References(17)

    [1] [1] Tong L M, Gattass R R, Ashcom J B, et al.. Subwavelength-diameter silica wires for low-loss optical wave guiding[J]. Nature, 2003, 426(6968): 816-819.

    [2] [2] Tong L M, Lou J Y, Ye Z Z, et al.. Self-modulated taper drawing of silica nanowires[J]. Nanotechnology, 2005, 16(9): 1445-1448.

    [3] [3] G Brambilla, Vittoria Finazzi, David J Richardson. Ultra-low-loss optical fiber nanotapers[J]. Opt Express, 2004, 12(10): 2258-2263.

    [4] [4] G Brambilla. Optical fibre nanowires and microwires: a review[J]. J Opt, 2010, 12(4): 1-19.

    [5] [5] M Sumetsky. Optical fiber microcoil resonators[J]. Opt Express, 2004, 12(10): 2303-2316.

    [7] [7] Lei Zhang, Fuxing Gu, Jingyi Lou, et al.. Fast detection of humidity with a subwavelength-diameter fiber taper coated with gelatin film[J]. Opt Express, 2008, 16(17): 13349-13353.

    [8] [8] Heng Zhu, Yuqing Wang, Baojun Li. Tunable refractive index sensor with ultracompact structure twisted by poly (trimethylene terephthalate) nanowires[J]. Acs Nano, 2009, 3(10): 3110-3114.

    [9] [9] M Z Muhammad, A A Jasim, H Ahmad, et al.. Non-adiabatic silica microfiber for strain and temperature sensors[J]. Sensors and Actuators A Physical, 2013, 192: 130-132.

    [10] [10] He Hualong, Feng Guoying, Deng Guoliang, et al.. Improvement of the beam quality factor by using tapered micro/nano fiber[J]. Chinese J Laser, 2011, 38(8): 0805008.

    [11] [11] M Belal, Z Song, Y Jung, et al.. Optical fiber microwire current sensor[J]. Opt Lett, 2010, 35(18): 3045-3047.

    [12] [12] Zhengtong Wei, Zhangqi Song, Xueliang Zhang, et al.. Microparticle detection with optical microfibers[J]. IEEE Photon Technol Lett, 2013, 25(6): 568-571.

    [13] [13] Rafael R Gattass, Geoffry T Svacha, Limin Tong, et al.. Supercontinuum generation in submicrometer diameter silica fibers[J]. Opt Express, 2006, 14(20): 9408-9414.

    [14] [14] Kou L H, Labre D, Chylek P. Refractive indices of water and ice in the 0.65- to 2.5-μm spectral range[J]. Appl Opt, 1993, 32(19): 3531-3540.

    [15] [15] Deng Ruru, He Yingqing, Qin Yan, et al.. Measuring pure water absorption coefficient in the near-infrared spectrum (900~2500 nm)[J]. J Remote Sens, 2012, 16(1): 192-206.

    [16] [16] Bertie J E, Keefe C D. Infrared intensities of liquids XXIV: optical constants of liquid benzene-h6 at 25 ℃ extended to 11.5 cm-1 and molar polarizabilities and integrated intensities of benzene-h6 between 6200 and 11.5 cm-1[J]. J Mol Struct, 2004, 695-696: 39-57.

    [17] [17] Shen Y C , Lu Z H, Spiers S. Measurement of the optical absorption coefficient of liquid by use of a time-resolved photoacoustic technique[J]. Appl Opt, 2000, 39(22): 4007-4012.

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    Song Zhangqi, Wei Zhengtong, Zhang Xueliang, Yu Yang, Meng Zhou. Research on Sensing Technologies Based on Optical Micro-Nano Fiber Evanescent Field[J]. Chinese Journal of Lasers, 2013, 40(s1): 105005

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    Paper Information

    Category: Optical communication

    Received: Jul. 10, 2013

    Accepted: --

    Published Online: Dec. 25, 2013

    The Author Email: Zhangqi Song (songzhangqi@nudt.edu.cn)

    DOI:10.3788/cjl201340.s105005

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