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Near-infrared high sensitivity solute concentration sensor based on lossy-mode resonance of multimode fiber structures coated with aluminum-doped zinc oxide

机译:基于掺杂铝掺杂氧化锌的多模纤维结构的损耗模式共振的近红外高灵敏度溶质浓度传感器

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We present an optical sensor for solute concentration in solutions by using aluminum-doped zinc oxide (AZO) coatings on silica single-mode/coreless/single-mode and single-mode/multimode/single-mode fiber structures. The fiber sensor is based on the detection of the second lossy-mode resonance (LMR) order of the AZO coated fiber structures which covers the near-infrared C and L wavelength bands. AZO thin films with Zn:Al atomic concentration proportions of 92%:8% were deposited on the fiber structures by radio frequency magnetron sputtering technique. Wavelength displacement of the second order LMR notch as a function of concentration variation on isopropyl-alcohol/glycerin liquid mixtures where measured by a simple optical transmission setup, detected in the 1.55 urn wavelength range. In glycerin concentration percentages (c%) variations from 5% to 30%, maximum sensitivity of 1.42 nm/c% was obtained for coreless-fiber-based structures.
机译:我们通过在二氧化硅单模/无芯/单模和单模/多模/单模/单模光纤结构上使用铝掺杂的氧化锌(AZO)涂层,介绍了一种用于溶液中溶液浓度的光学传感器。光纤传感器基于覆盖近红外C和L波长带的偶氮涂层光纤结构的第二有损模式谐振(LMR)顺序的检测。 Zn的Azo薄膜:通过射频磁控溅射技术沉积在纤维结构上的92%:8%的Al原子浓度比例。二阶LMR凹口的波长位移作为浓度变化的异丙醇/甘油液混合物浓度变化,其中通过简单的光传输设置测量,在1.55 URN波长范围内检测到。在甘油浓度百分比(C%)变化的5%至30%,获得基于无核纤维的结构的最大敏感性1.42nm / c%。

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