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首页> 外文期刊>IEEE sensors journal >Ultra-Sensitive Fiber-Optic Temperature Sensor Consisting of Cascaded Liquid-Air Cavities Based on Vernier Effect
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Ultra-Sensitive Fiber-Optic Temperature Sensor Consisting of Cascaded Liquid-Air Cavities Based on Vernier Effect

机译:超敏感光纤温度传感器,基于Vernier效应组成的级联液体空气腔

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摘要

A temperature sensor consisting of cascaded liquid-air cavities based on Vernier effect was proposed. The cascaded liquid-air cavities were fabricated simply by partially filling a section of silica capillary tube (SCT) with dimethyl silicone oil (DSO). One opening of the SCT was spliced to the single mode fiber, and the other opening was sealed by the UV glue. The Vernier effect could be generated when the optical paths of liquid-air cavities are close to each other. More importantly, as the lengths of the two cavities change synchronously and complementarily along with the thermal shift of the liquid-air interface, the sensitivity of the sensor can be further improved by about 1.7 times on the basis of ordinary Vernier effect. The actual temperature sensitivity of the proposed sensor around 35 degrees C reaches as high as 39.21 nm/ degrees C, which makes the sensor more competitive in medical and pharmaceutical fields.
机译:提出了一种基于Vernier效应的级联液体空气腔组成的温度传感器。通过将二甲基硅油(DSO)部分填充二氧化硅毛细管(SCT)部分来制造级联的液体空气空腔。 SCT的一个开口被拼接到单模光纤,另一个开口被UV胶水密封。当液体空气腔的光路彼此靠近时,可以产生vernier效果。更重要的是,随着两个空腔的长度同步地变化并且互补地随着液体空气接口的热偏移而变化,在普通游标效果的基础上,传感器的灵敏度可以进一步提高约1.7倍。所提出的传感器的实际温度敏感度约为35摄氏度达到39.21nm /℃,这使得传感器在医学和制药领域更竞争。

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