首页> 外文期刊>Journal of Lightwave Technology >Enhancing the Visibility of Vernier Effect in a Tri-Microfiber Coupler Fiber Loop Interferometer for Ultrasensitive Refractive Index and Temperature Sensing
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Enhancing the Visibility of Vernier Effect in a Tri-Microfiber Coupler Fiber Loop Interferometer for Ultrasensitive Refractive Index and Temperature Sensing

机译:提高三微纤维耦合光纤环干涉仪中的游标效应的可见性,以进行超细折射率和温度传感

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摘要

In this article a Vernier effect based sensor is analyzed and demonstrated experimentally in a tri-microfiber coupler (Tri-MFC) and polarization-maintaining fiber (PMF) loop interferometer (Tri-MFC-PMF) to provide ultrasensitive refractive index and temperature sensing. The main novelty of this work is an analysis of parameters of the proposed Tri-MFC-PMF with the objective of determining the conditions leading to a "strong" Vernier effect. It has been identified by simulation that the Vernier effect is a primary factor in the design of Tri-MFC-PMF loop sensing structure for sensitivity enhancement. It is furthermore demonstrated experimentally that enhancing the visibility of the Vernier spectrum in the Tri-MFC-PMF allows to achieve an ultrahigh refractive index and temperature sensitivity with improved measurement accuracy. Specifically it is shown that small values of the total phase difference (pi/16+N pi)similar to(pi/4+N pi), where N is an integer, accumulated over the PMF loop and Tri-MFC loop result in a "strong" Vernier effect. Experimentally an ultrahigh refractive index sensitivity of -20588 nm/RIU and temperature sensitivity of 0.019 nm/degrees C are demonstrated by utilizing the stronger Vernier effect with "clear" Vernier spectrum. This analysis of the parameters may be useful to future researchers seeking to increase the measurement accuracy of sensors by enhancing the spectral visibility of the Vernier effect in other types of fiber optic interferometers.
机译:在本文中,在三微纤维耦合器(TRI-MFC)和偏振 - 保持纤维(PMF)环干涉仪(TRI-MFC-PMF)中通过基于Vernier效果的传感器进行了分析和说明,以提供超细折射率和温度感测。这项工作的主要新颖性是对所提出的三-MFC-PMF参数的分析,目的是确定导致“强烈”vernier效应的条件。已经通过模拟确定了Vernier效应是用于灵敏度增强的TRI-MFC-PMF环路感测结构的主要因素。此外,实验证明,提高了三-MFC-PMF中的游标的可见度允许通过改善的测量精度来实现超高折射率和温度敏感性。具体地示出了类似于(PI / 4 + N PI)的总相位差(PI / 16 + N PI)的小值,其中N是整数,累积在PMF环路上,并且TRI-MFC环路累积“强烈”vernier效果。通过利用“清除”vernier光谱,通过利用更强的vernier效应来证明,通过使用更强的游标效应来进行-20588nm / riu和温度敏感度的超高折射率灵敏度。这种对参数的分析可能对未来的研究人员来说,寻求通过提高其他类型的光纤干涉仪中的游标效应的光谱可见度来提高传感器的测量精度。

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