用于温度测量的高灵敏度微纳光纤传感器

Fuzheng Zhang, Na Zhao, Qijing Lin, Feng Han, Libo Zhao, Ping Yang, Zhuangde Jiang
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引用次数: 2

摘要

微纳光纤作为光纤与纳米技术的完美结合,是近年来发展起来的光纤和微纳光子学的前沿研究方向之一。本文提出并实现了一种基于微纳纤维结构的高灵敏度温度传感器。传感器的线性度和灵敏度分别为98.6%和-0.0121 dBm /°C。并对微纳纤维的制备工艺及影响因素进行了详细的介绍和讨论。该结构具有灵敏度高、结构简单、传输损耗小、成本低、制作方便等优点,是温度测量领域的理想选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Micro-nano fiber sensor with high sensitivity for temperature measurement
As the perfect combination of fiber optics and nanotechnology, micro-nano fiber is one of the frontier research directions in fiber optics and micro-nano photonics developed in recent years. In this paper, a high-sensitivity temperature sensor is proposed and realized based on the micro-nano fiber structure. The degree of linearity and sensitivity of the sensor are 98.6% and -0.0121 dBm / °C, respectively. Besides, the preparation process and influencing factors of micro-nano fiber are also introduced and discussed in detail. The configuration features the advantages of high sensitivity, simple structure, low transmission loss, low cost, and easy fabrication, making it a good candidate for the field of temperature measurement.
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