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基于石英毛细管的用于温度传感的反谐振反射光波导复用技术。

Multiplexing of anti-resonant reflecting optical waveguides for temperature sensing based on quartz capillary.

作者信息

Cai Nian, Xia Li, Wu Ying

出版信息

Opt Express. 2018 Dec 10;26(25):33501-33509. doi: 10.1364/OE.26.033501.

DOI:10.1364/OE.26.033501
PMID:30645501
Abstract

A novel multiplexing scheme of anti-resonant reflecting optical waveguides (ARROW) for temperature sensing based on quartz capillary is firstly proposed and experimentally demonstrated. Each ARROW-based sensor is manufactured by fusion splicing a short section of capillary between two standard single-mode fiber (SMF). Experiments were demonstrated on a three cascaded ARROW-based sensing network chopped from a fiber array with multiple sensors. Simulation and experimental results demonstrate that the positions of sharp periodic transmission dips are independent of the capillary length, but dependent on the refractive indexes and thickness of the silica cladding. The temperature sensitivities of 18.77 pm/°C, 18.19 pm/°C, and 17.94 pm/°C are achieved by wavelength demodulation of selected dips of Gaussian fitting algorithm, and the tunability of sensitivity can be realized by selecting different dips. Furthermore, the merits of low strain cross-sensitivity (-0.71 pm/με), easy fabrication capability and high spectral extinction ratio (about 30dB) make the proposed multiplexing scheme an excellent candidate for performing multi-point and multi-parameter measurements in harsh environments.

摘要

首次提出并通过实验证明了一种基于石英毛细管的用于温度传感的新型抗谐振反射光波导(ARROW)复用方案。每个基于ARROW的传感器是通过在两根标准单模光纤(SMF)之间熔接一小段毛细管制造而成。对从具有多个传感器的光纤阵列中截取的三串联基于ARROW的传感网络进行了实验。仿真和实验结果表明,尖锐的周期性传输凹陷的位置与毛细管长度无关,但取决于二氧化硅包层的折射率和厚度。通过对高斯拟合算法所选凹陷进行波长解调,实现了18.77 pm/°C、18.19 pm/°C和17.94 pm/°C的温度灵敏度,并且可以通过选择不同的凹陷来实现灵敏度的可调性。此外,低应变交叉灵敏度(-0.71 pm/με)、易于制造以及高光谱消光比(约30dB)等优点使得所提出的复用方案成为在恶劣环境中进行多点和多参数测量的理想选择。

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