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High-sensitivity sensor of low relative humidity based on overlay on side-polished fibers

机译:基于侧面抛光纤维的覆盖层的低相对湿度高灵敏度传感器

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摘要

A low relative humidity (RH) sensor based on overlay on side-polished fiber is presented. The evanescent field from a single-mode optical fiber is coupled to a TiO2 waveguide overlay. The transmission response exhibits sharp resonances whose central wavelengths are linearly shifted with RH. This behavior is due to the porous columnar nanostructure of the TiO2 film. The water is adsorbed in the pores of the nanostructure changing the refractive index of the layer and causing a shift of the wavelength resonances. The response of the sensor is determined by the shape and size of the pores. The optical fiber evanescent field sensor developed has a linear response and high sensitivity (0.5 nm/% RH) for low RH (RH∼0%-15%) at 26.1°C±0.6°C. The lack of hysteresis in the adsorption-desorption cycle has been checked. The development of a sensor with tailored response is envisaged using properly techniques to control the porosity of the material.
机译:提出了一种基于在侧抛光光纤上覆盖的低相对湿度(RH)传感器。来自单模光纤的逝场耦合到TiO2波导覆盖层。传输响应表现出尖锐的共振,其中心波长随RH线性移动。此行为是由于TiO2薄膜的多孔柱状纳米结构。水被吸收在纳米结构的孔中,从而改变该层的折射率并引起波长共振的偏移。传感器的响应取决于孔的形状和大小。开发的光纤瞬逝场传感器在26.1°C±0.6°C的低RH(RH〜0%-15%)时具有线性响应和高灵敏度(0.5 nm /%RH)。已经检查了吸附-解吸循环中没有滞后现象。设想使用适当的技术来控制材料的孔隙率,从而开发出具有定制响应的传感器。

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