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Relative humidity sensor based on small up-tapered photonic crystal fiber Mach-Zehnder interferometer

机译:基于小锥形光子晶体光纤MACH-ZEHNDER干涉仪的相对湿度传感器

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In this paper, a new in-line mode Mach-Zehnder interferometer (MZI) based on photonic crystal fiber (PCF) coated with graphene quantum dots (GQDs) and polyvinyl alcohol (PVA) film for relative humidity (RH) sensing was designed. The MZI was formed by splicing a section of PCF between two sections of single mode fiber (SMF) with two up-tapers. The two up-tapers acted as mode splitter/combiner and were made by fusion tapering technique. The Mach-Zehnder interferometer (MZI) incorporated inter modal interference between core mode and cladding modes of the PCF. The refractive index (RI) and volume of GQDs-PVA film will decrease and expansion with the increase of RH, respectively. By measuring the wavelength shift of the interference pattern, RH measurement could be achieved. Before RH measurement, the external RI was tested experimentally to verify that the interference spectrum shifted to right with the increase of refractive index (RI), and the sensitivity was up to 343.7 nm/RIU. In addition, the RH sensing properties with the different thickness of GQDs-PVA film (2.48 mu m, 3.72 mu m, 4.45 mu m, 5.96 mu m, 7.42 mu m, 8.17 mu m) were also investigated experimentally, and the corresponding sensitivity were -0.0901 nm/%RH, -0.0797 nm/96RH, -0.0337 nm1,6RH, 0.0586 nm/%RH, 0.0539 nm/%RH, 0.0313 nm/%RH, respectively. The measurement result revealed that different film thickness had different sensitivity and spectrum movement direction. Meanwhile, the sensor had the advantages of simple structure, small size, high sensitivity and low cost. What's more, the sensor also presents good stability and reversibility of the sensor. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文设计了一种基于具有石墨烯量子点(GQDS)和聚乙烯醇(PVA)感测的光子晶体纤维(PCF)的新型在线模式Mach-Zehnder干涉仪(MZI),用于相对湿度(RH)感测。通过用两个上锥形拼接两段单模光纤(SMF)之间的PCF部分来形成MZI。两个上脚尖用作模式分离器/组合器,通过融合锥形技术进行。 Mach-Zehnder干涉仪(MZI)在PCF的核心模式和包层模式之间结合了跨模式干扰。 GQDS-PVA薄膜的折射率(RI)和体积分别随着RH的增加而降低和膨胀。通过测量干涉图案的波长偏移,可以实现RH测量。在RH测量之前,实验测试外部RI,以验证随着折射率(RI)的增加而转移到右侧的干扰光谱,并且灵敏度高达343.7nm / Riu。另外,还在实验研究中研究了具有不同厚度的GQDS-PVA膜(2.48μm,3.72μm,4.45μm,5.96μm)的Rh感测性能,以及相应的灵敏度为-0.0901nm /%rH,-0.0797nm / 96RH,-0.0337nm1,66RH,0.0586nm /%RH,0.0539nm /%RH,0.0313nm /%RH,0.0313nm /%RH。测量结果显示,不同的膜厚度具有不同的灵敏度和光谱运动方向。同时,传感器结构简单,尺寸小,灵敏度高,成本低。更重要的是,传感器还具有良好的稳定性和传感器的可逆性。 (c)2018年elestvier b.v.保留所有权利。

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