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Optical characterization of different waist diameter on microfiber loop resonator humidity sensor

机译:微纤维环谐振器湿度传感器不同腰直径的光学特征

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In this paper, the effect of different waist diameter on silica microfiber loop resonator (MLR) relative humidity (%RH) sensor is reported. The silica fiber was tapered to vary the waist diameter to 3 mu m, 4 mu m, 5 mu m,7 mu m, 8 p.m and 10 mu m using flame brushing technique. The MLR with a 300 mu m diameter loop was formed by manually twisted the tapered fiber under an optical microscope into a self-touching loop. Initially, the effect of whispering gallery modes (WGMs) on the MLR was observed. Transmission mode spectra were observed to determine the number of resonated wavelength and quality factor (Q-factor). The Q-factor is observed to be 10(5) for all samples and MLR with 3 mu m diameter achieve the highest Q-factor value. A significant response to %RH from 35% to 85% was observed due to the change of refractive index between the MLR and the surrounding medium resulting different light attenuation in the microfiber. The sensitivity increased by a factor of 12.2 for the MLR with diameter of 7 mu m as compared to the smaller diameter MLRs and a factor of 13.7 as compared to straight microfiber (SmF). As for resolution, the MLR with waist diameter of 7 mu m improve by a factor of 5 as compared to the smaller waist diameter and a factor of 6.5 as compared to SmF. The proposed humidity sensor employs the microfiber loop resonator without any sensitive material coated on it which reduced the complexity during the fabrication and manufacturing process. The reported results may contribute to the optimal waist diameter of microfiber loop resonators for humidity sensing application. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文报道了不同腰直径对二氧化硅微纤维环谐振器(MLR)相对湿度(%RH)传感器的影响。使用火焰刷涂技术,二氧化硅纤维逐渐变化以改变腰部直径至3μm,4μm,5μm,7μm,8下午8μm和10μm。通过在光学显微镜下在光学显微镜下手动扭转锥形纤维,形成具有300μm直径环的MLR进入自接触环。最初,观察到在MLR上的耳语画廊模式(WGMS)的效果。观察到传输模式光谱以确定谐振波长和质量因数(Q系数)的数量。观察到Q系数是& 10(5)用于所有样品,并且具有3μm的MLR,直径达到最高的Q系数值。由于MLR和周围介质之间的折射率的变化导致微纤维中的不同光衰减,因此观察到对%RH的显着反应从35%到85%观察到。与直径的MLR相比,敏感性增加了直径为7μm的MLR的12.2倍。与直的微纤维(SMF)相比,直径为7μm。对于分辨率,与腰部直径为7μm的MLR,与较小的腰部直径相比,与SMF相比,腰部直径和6.5因子增加了5倍。所提出的湿度传感器采用微纤维环谐振器,没有任何涂覆在制造和制造过程中的复杂性的任何敏感材料。报告的结果可能有助于微纤维环谐振器的最佳腰直径用于湿度传感应用。 (c)2018年elestvier b.v.保留所有权利。

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