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Gerald Farrell - One of the best experts on this subject based on the ideXlab platform.

  • Polymer micro-Fiber Bragg Grating
    Optics Letters, 2013
    Co-Authors: Ginu Rajan, Eliathamby Ambikaizrajah, Muhammad Yusof Mohd Noor, Nigel H. Lovell, Gerald Farrell
    Abstract:

    Polymer micro-Fibers with inscribed Bragg Gratings are reported in this Letter. Starting with a single-mode polymer optical Fiber and implementing a two-stage tapering process, a 16 μm diameter micro-Fiber is fabricated and a Bragg Grating is inscribed in it that exhibits a peak reflected wavelength circa 1530 nm. The growth dynamics of the polymer micro-Fiber Bragg Grating are also observed and analyzed. A maximum reflectivity of 5% is obtained after an exposure time of 3 min to a 50 mW power He–Cd laser of 325 nm wavelength. The temperature and strain characterization results of the micro-Fiber Bragg Grating with different diameters are also presented. Such polymer micro-Fiber Bragg Gratings can be used as sensors for high-sensitivity measurements in a number of application areas.

Ginu Rajan - One of the best experts on this subject based on the ideXlab platform.

  • Fabrication and characterization of a polymer micro-Fiber Bragg Grating
    Fourth Asia Pacific Optical Sensors Conference, 2013
    Co-Authors: Ginu Rajan, Gang-ding Peng
    Abstract:

    Polymer micro-Fibers with inscribed Bragg Gratings are reported in this paper. By implementing a two-stage fabrication process a 16 µm diameter micro-Fiber is fabricated with an inscribed 10 mm long Bragg Grating which exhibits a peak reflected wavelength circa 1530 nm. The growth dynamics of the polymer micro-Fiber Bragg Grating are also observed and analyzed. A maximum reflectivity of 5% is obtained after an exposure time of 3 minutes to a 50 mW power He-Cd laser of 325 nm wavelength. The temperature characterization of the micro-Fiber Bragg Grating with different diameters is also presented. The fabricated micro-Fiber Bragg Grating can be used as sensors for high sensitivity measurements in a number of application areas.

  • Polymer micro-Fiber Bragg Grating
    Optics Letters, 2013
    Co-Authors: Ginu Rajan, Eliathamby Ambikaizrajah, Muhammad Yusof Mohd Noor, Nigel H. Lovell, Gerald Farrell
    Abstract:

    Polymer micro-Fibers with inscribed Bragg Gratings are reported in this Letter. Starting with a single-mode polymer optical Fiber and implementing a two-stage tapering process, a 16 μm diameter micro-Fiber is fabricated and a Bragg Grating is inscribed in it that exhibits a peak reflected wavelength circa 1530 nm. The growth dynamics of the polymer micro-Fiber Bragg Grating are also observed and analyzed. A maximum reflectivity of 5% is obtained after an exposure time of 3 min to a 50 mW power He–Cd laser of 325 nm wavelength. The temperature and strain characterization results of the micro-Fiber Bragg Grating with different diameters are also presented. Such polymer micro-Fiber Bragg Gratings can be used as sensors for high-sensitivity measurements in a number of application areas.

Eliathamby Ambikaizrajah - One of the best experts on this subject based on the ideXlab platform.

  • Polymer micro-Fiber Bragg Grating
    Optics Letters, 2013
    Co-Authors: Ginu Rajan, Eliathamby Ambikaizrajah, Muhammad Yusof Mohd Noor, Nigel H. Lovell, Gerald Farrell
    Abstract:

    Polymer micro-Fibers with inscribed Bragg Gratings are reported in this Letter. Starting with a single-mode polymer optical Fiber and implementing a two-stage tapering process, a 16 μm diameter micro-Fiber is fabricated and a Bragg Grating is inscribed in it that exhibits a peak reflected wavelength circa 1530 nm. The growth dynamics of the polymer micro-Fiber Bragg Grating are also observed and analyzed. A maximum reflectivity of 5% is obtained after an exposure time of 3 min to a 50 mW power He–Cd laser of 325 nm wavelength. The temperature and strain characterization results of the micro-Fiber Bragg Grating with different diameters are also presented. Such polymer micro-Fiber Bragg Gratings can be used as sensors for high-sensitivity measurements in a number of application areas.

Nigel H. Lovell - One of the best experts on this subject based on the ideXlab platform.

  • Polymer micro-Fiber Bragg Grating
    Optics Letters, 2013
    Co-Authors: Ginu Rajan, Eliathamby Ambikaizrajah, Muhammad Yusof Mohd Noor, Nigel H. Lovell, Gerald Farrell
    Abstract:

    Polymer micro-Fibers with inscribed Bragg Gratings are reported in this Letter. Starting with a single-mode polymer optical Fiber and implementing a two-stage tapering process, a 16 μm diameter micro-Fiber is fabricated and a Bragg Grating is inscribed in it that exhibits a peak reflected wavelength circa 1530 nm. The growth dynamics of the polymer micro-Fiber Bragg Grating are also observed and analyzed. A maximum reflectivity of 5% is obtained after an exposure time of 3 min to a 50 mW power He–Cd laser of 325 nm wavelength. The temperature and strain characterization results of the micro-Fiber Bragg Grating with different diameters are also presented. Such polymer micro-Fiber Bragg Gratings can be used as sensors for high-sensitivity measurements in a number of application areas.

Muhammad Yusof Mohd Noor - One of the best experts on this subject based on the ideXlab platform.

  • Polymer micro-Fiber Bragg Grating
    Optics Letters, 2013
    Co-Authors: Ginu Rajan, Eliathamby Ambikaizrajah, Muhammad Yusof Mohd Noor, Nigel H. Lovell, Gerald Farrell
    Abstract:

    Polymer micro-Fibers with inscribed Bragg Gratings are reported in this Letter. Starting with a single-mode polymer optical Fiber and implementing a two-stage tapering process, a 16 μm diameter micro-Fiber is fabricated and a Bragg Grating is inscribed in it that exhibits a peak reflected wavelength circa 1530 nm. The growth dynamics of the polymer micro-Fiber Bragg Grating are also observed and analyzed. A maximum reflectivity of 5% is obtained after an exposure time of 3 min to a 50 mW power He–Cd laser of 325 nm wavelength. The temperature and strain characterization results of the micro-Fiber Bragg Grating with different diameters are also presented. Such polymer micro-Fiber Bragg Gratings can be used as sensors for high-sensitivity measurements in a number of application areas.