首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Design of a high-sensitivity cascaded long-period fiber grating sensor operating at PMTP
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Design of a high-sensitivity cascaded long-period fiber grating sensor operating at PMTP

机译:在PMTP上运行的高灵敏度级联长期光纤光栅传感器的设计

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This paper presents a novel cascaded long-period fiber grating (CLPFG) sensor which is cascaded by two identical coated long-period fiber gratings (LPFGs) operating at the phase-matching turning point (PMTP). This CLPFG sensor operates at the PMTP, so it has the highest sensitivity compared with those LPFGs operating near the PMTP. In addition, the spectrum of this CLPFG sensor is composed of a series of narrow-bandwidth loss peaks, which are easy to be detected by an ordinary wavelength demodulator. In theory, the transmission spectrum of the CLPFG can be calculated by the transfer matrix method. We select two loss peaks with highest sensitivity from the transmission spectrum of the CLPFG for dual-peak sensing. The simulation results show that the wavelength spacing of the two peaks changes from 24.6 to 74.8 nm with the surrounding refractive index changing from 1.330 to 1.334. The average sensitivity is 12550 nm/RIU, which is about 6 times higher than traditional LPFG sensors where the LPFG is operating near the PMTP, so this kind of CLPFG sensor is suitable for high-sensitivity sensing. (c) 2018 Optical Society of America
机译:本文介绍了一种新型级联的长周期光纤光栅(CLPFG)传感器,其在相位匹配转折点(PMTP)上运行的两个相同的涂层长期光纤光栅(LPFG)级联。该CLPFG传感器在PMTP上运行,因此与PMTP附近操作的LPFG相比,它具有最高的灵敏度。另外,该CLPFG传感器的频谱由一系列窄带宽损耗峰组成,易于通过普通波长解调器检测。理论上,CLPFG的透射谱可以通过传递矩阵法计算。我们选择具有最高灵敏度的两个损耗峰,从CLPFG的传输频谱进行双峰感测。仿真结果表明,两个峰的波长间距从24.6到74.8nm变化,周围折射率从1.330变为1.334。平均灵敏度为12550 nm / Riu,比传统的LPFG传感器高出6倍,其中LPFG在PMTP附近运行,因此这种CLPFG传感器适用于高灵敏度感测。 (c)2018年光学学会

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