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基于在群双折射转折点工作的萨尼亚克干涉仪的空气中超灵敏传感。

Ultrasensitive sensing in air based on Sagnac interferometer working at group birefringence turning point.

作者信息

Sun Li-Peng, Yuan Zihao, Huang Tiansheng, Sun Zhen, Lin Wenfu, Huang Yan, Xiao Peng, Yang Mingjin, Li Jie, Guan Bai-Ou

出版信息

Opt Express. 2019 Oct 14;27(21):29501-29509. doi: 10.1364/OE.27.029501.

Abstract

In this paper, a gas refractometer based on microfiber Sagnac interferometer is demonstrated, which can achieve an ultrahigh sensitivity when operating at the group birefringence turning point. We undertake a theoretical analysis and a simulated calculation to study the device characteristics and obtain the specific parameters of ellipticity and long axis of the elliptic microfiber for the group birefringence turning point. In the experiment, we obtain a positive sensitivity of 0.295 nm/KPa and a negative sensitivity of -0.219 nm/KPa during gas pressure and refractive index (RI) sensing, the obtained highest RI sensitivity can reach 160,938.9 nm/RIU. To further reveal its practical potential in gas detection, we conduct CO gas concentration detection and the device also demonstrates ultrahigh sensitivity and good repeatability. Besides, temperature sensing is performed to explore its temperature response wherein it shows a sensitivity of 486.7 pm/ °C. These results show its potential for use in gas- and acoustic-sensing applications.

摘要

本文展示了一种基于微光纤萨格纳克干涉仪的气体折射仪,其在群双折射转折点工作时可实现超高灵敏度。我们进行了理论分析和模拟计算,以研究该器件特性,并获得群双折射转折点处椭圆微光纤的椭圆率和长轴的具体参数。在实验中,我们在气体压力和折射率(RI)传感过程中分别获得了0.295 nm/KPa的正灵敏度和 -0.219 nm/KPa的负灵敏度,所获得的最高RI灵敏度可达160,938.9 nm/RIU。为进一步揭示其在气体检测中的实际潜力,我们进行了CO气体浓度检测,该器件也展示出超高灵敏度和良好的重复性。此外,进行了温度传感以探究其温度响应,其显示出486.7 pm/°C的灵敏度。这些结果表明了其在气体和声传感应用中的潜力。

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