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RI sensing system with high sensitivity and large measurement range using a microfiber MZI and a photonic crystal fiber MZI

机译:使用微纤维MZI和光子晶纤维MZI具有高灵敏度和大测量范围的RI传感系统

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摘要

A dual channel optical fiber sensing system for refractive index (RI) measurement with ultra-high sensitivity and large measurement range is proposed and demonstrated by combining a rough measurement sensor and a precise measurement sensor. One sensing channel consists of an optical microfiber Mach-Zehnder interferometer (MZI), which works as a RI precise measurement sensor. The microfiber MZI is fabricated on a single mode fiber (SMF) by using a two-step tapering method. The microfiber MZI operating around dispersion turning point (DTP) shows an ultra-high sensitivity of up to 44271 nm/RIU, however, its measurement range is limited to be only 0.0015 owing to the periodic interference spectrum. The other sensing channel contains an SMF-photonic crystal fiber (PCF)-SMF MZI, which works as a RI rough measurement sensor. RI sensitivity of the SMF-PCF-SMF MZI is 143.67 nm/RIU in 1.3317-1.3710. RI measurement range of the microfiber MZI is expanded by firstly read a rough RI value from the SMF-PCF-SMF MZI and then determine the observation window of the interference spectrum of the microfiber MZI. This proposed sensing scheme solves the trade-off between high sensitivity and large measurement range caused by the periodic interference spectrum, and it is promising in liquid RI-related sensing fields with high requirements of both sensitivity and measurement range. (C) 2020 Elsevier Ltd. All rights reserved.
机译:提出了一种具有超高灵敏度和大测量范围的折射率(RI)测量的双通道光纤传感系统,并通过组合粗略测量传感器和精确的测量传感器来证明。一个传感通道由光学微纤维Mach-Zehnder干涉仪(MZI)组成,其用作RI精确测量传感器。通过使用两步逐渐变锥形方法在单模光纤(SMF)上制造微纤维MZI。在色散转弯点(DTP)周围操作的微纤维MZI显示出高达44271nm / RiU的超高灵敏度,然而,由于周期性干扰频谱,其测量范围仅限于0.0015。另一感测通道包含SMF-光子晶体纤维(PCF)-SMF MZI,其用作RI粗略测量传感器。 SMF-PCF-SMF MZI的RI敏感性是1.3317-1.3710的143.67 nm / RIU。通过首先从SMF-PCF-SMF MZI读取粗略的RI值来扩展微纤维MZI的RI测量范围,然后确定微纤维MZI的干扰谱的观察窗口。该提出的传感方案解决了由周期性干扰谱引起的高灵敏度和大测量范围之间的折衷,并且在液体RI相关的感测场中具有高要求的液体RI相关的传感领域。 (c)2020 elestvier有限公司保留所有权利。

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