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High sensitivity dual core photonic crystal fiber sensor for simultaneous detection of two samples

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摘要 The optical control ability of photonic crystal fiber(PCF)is a distinctive property suitable for improving sensing and plasma performance.This article proposes a dual-core D-channel PCF sensor that can detect two samples simultaneously,which effectively solves the problems of coating difficulty and low wavelength sensitivity.The PCF has four layers of air holes,which dramatically reduces the optical fiber loss and is more conducive to the application of sensors in actual production.In addition,by introducing dual cores on the upper and lower sides of the central air hole,reducing the spacing between the core and the gold nanolayer,a stronger evanescent field can be generated in the cladding air hole.The optical fiber sensor can detect the refractive index of two samples simultaneously with a maximum sensitivity of 21300 nm/RIU.To the best of our knowledge,the sensitivity achieved in this work is the highest sensitivity with the dual sample synchronous detection sensors.The detection range of the refraction index is 1.35-1.41,and the resolution of the sensor is 4.695×10^(-6).Overall,the sensor will be suitable for medical detection,organic chemical sensing,analyte detection,and other fields.
作者 邴丕彬 武桂芳 刘庆 李忠洋 谭联 张红涛 姚建铨 Pibin Bing;Guifang Wu;Qing Liu;Zhongyang Li;Lian Tan;Hongtao Zhang;Jianquan Yao(College of Electric Power,North China University of Water Resources and Electric Power,Zhengzhou 450045,China;College of Precision Instrument and Opto-Electronics Engineering,Institute of Laser and Opto-Electronics,Tianjin University,Tianjin 300072,China)
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第8期429-435,共7页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant No.61601183 and 31671580) the Key Technologies Research and Development Program of Henan Province,China(Grant No.202102210390 and 222102210242) Young Backbone Teachers in University of Henan Province,China(Grant No.2020GGJS099)。
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