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Highly-sensitive optical fiber temperature sensors based on PDMS/silica hybrid fiber structures

机译:基于PDMS /二氧化硅混合纤维结构的高敏感光纤温度传感器

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摘要

It is very important to accurately measure temperature in industrial production and scientific research. In this work, the high-sensitivity temperature sensors are proposed based on the modal interference principle. To increase the sensitivity, polydimethylsiloxane (PDMS) as the temperature sensitive material in filled into the hollow core fiber to fabricate the PDMS/silica hybrid fiber structures. The hybrid fiber structure is inserted between two pieces of single mode fiber as the sensing section. The environmental temperature can modify the phase delays of the modes in the hybrid fiber with different values. According to the principle of modal interference, the resonance wavelength of the transmission spectrum is shifted with temperature variation. The experimental results showed that the sensitivity of the sensor was -384 pm/degrees C in the range of 25 degrees C-80 degrees C when the core diameter of the hollow core fiber was 30 mu m. The proposed temperature can be used to monitor the temperature in real time accurately in fields of biological detection, chemical and pharmaceutical industries. (C) 2018 Elsevier B.V. All rights reserved.
机译:准确测量工业生产和科学研究中的温度非常重要。在这项工作中,基于模态干扰原理提出了高灵敏度温度传感器。为了增加敏感性,聚二甲基硅氧烷(PDMS)作为填充到中空芯纤维中的温度敏感材料以制造PDMS /二氧化硅杂化纤维结构。混合纤维结构插入两块单模光纤之间作为传感部分。环境温度可以用不同的值修改混合纤维中模式的相位延迟。根据模态干扰的原理,透射光谱的共振波长随温度变化而移动。实验结果表明,当中空芯纤维的芯直径为30μm时,传感器的灵敏度为-384pm /℃/°C在25摄氏度的范围内。所提出的温度可用于在生物检测,化学和制药行业的领域准确地监测温度。 (c)2018年elestvier b.v.保留所有权利。

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