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Sensing Properties of Femtosecond Laser-Inscribed Long Period Gratings in Photonic Crystal Fiber
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作者 Kyriacos KALLI Tom ALLSOP +4 位作者 Kaimin ZHOU Graham SMITH Michael KOMODROMOS David WEBB ian bennion 《Photonic Sensors》 SCIE EI CAS 2011年第3期228-233,共6页
为在 photonic 水晶纤维的长时期纤维栅栏的铭文的近红外线的、高紧张 femtosecond 激光脉搏的使用被报导。在 photonic 水晶纤维的栅栏结构的形成由允许波浪指导,但是损害并且散布 femtosecond 铭文横梁的纤维结构是复杂的。对称、不... 为在 photonic 水晶纤维的长时期纤维栅栏的铭文的近红外线的、高紧张 femtosecond 激光脉搏的使用被报导。在 photonic 水晶纤维的栅栏结构的形成由允许波浪指导,但是损害并且散布 femtosecond 铭文横梁的纤维结构是复杂的。对称、不对称的 femtosecond 激光铭文的效果被比较,到外部不安的长时期栅栏和他们的回答的极化特征被报导。 展开更多
关键词 光学传感器 设计 结构 自动化技术 传感器
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Microstructures made in optical fiber with femtosecond laser
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作者 Kaiming Zhou Lin Zhang +2 位作者 Xianfeng Chen Vladimir Mezentsev ian bennion 《International Journal of Smart and Nano Materials》 SCIE EI 2010年第4期237-248,共12页
Different types of microstructures including microchannels and microslots were made in optical fibers using femtosecond laser inscription and chemical etching.Integrated with UV-inscribed fiber Bragg gratings,these mi... Different types of microstructures including microchannels and microslots were made in optical fibers using femtosecond laser inscription and chemical etching.Integrated with UV-inscribed fiber Bragg gratings,these microstructures have miniature,robustness and high sensitivity features and have been used to implement novel devices for various sensing applications.The fiber microchannels were used to detect the refractive index change of liquid presenting sensitivities up to 7.4 nm/refractive index unit(RIU)and 166.7 dB/RIU based on wavelength and power detection,respectively.A microslot-in-fiber based liquid core waveguide as a refractometer has been proposed and the device was used to measure refractive index,and a sensitivity up to 945 nm/RIU(10−6/pm)was obtained.By filling epoxy in the microslot and subsequent UV light curing,a hybrid waveguide grating structure with polymer core and glass cladding was fabricated.The obtained device was highly thermal responsive,demonstrating a linear coefficient of 211 pm/◦C. 展开更多
关键词 ultrafast laser optical fiber fiber Bragg grating
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