基于单模-多模-单模结构的光纤流量计

M. Olivero, Aurora Bellone, Andon Bano, A. Vallan, G. Perrone
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引用次数: 0

摘要

单模-多模-单模(SMS)传感器由于其制造简单,具有不同量的传感能力,并且与以光纤布拉格光栅(fbg)为代表的最常见的光纤传感器相比,具有更高的灵敏度而引起了人们的关注。此外,SMS传感器对应变表现出蓝移灵敏度,与fbg相反,这使得它们适用于应变-温度交叉灵敏度可能是一个问题的应用。SMS传感器是通过在单模辫子之间拼接短多模,优选是双模或准双模光纤跳线制成的。以不同相速度传播的模式的干涉产生随温度、应变或模式间相位差的任何扰动而变化的光谱图。本文综述了SMS作为温度传感器的主要特点,并提出了基于热线原理的SMS传感器在生物医学上的潜在应用:使用980 nm的光纤耦合激光源作为SMS传感器的可控加热源,当浸入流体时,将由散热引起的温度变化转化为透射光谱的波长位移。热表征和概念验证实验显示了传感器的可行性和功能,并对可能的发展和潜在的应用进行了展望。
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Optical fiber flowmeter based on a single mode-multimode-single mode structure
Single mode-Multimode-Single mode (SMS) sensors have been attracted a relevant attention because of their simple manufacturing, their capability of sensing different quantities, and their enhanced sensitivity compared to the most common fiber optic sensor represented by Fiber Bragg Gratings (FBGs). Moreover, SMS sensors exhibit blue-shift sensitivity to strain, opposite to FBGs, making them suitable in applications where strain-temperature cross-sensitivity may be an issue. SMS sensors are made by splicing a short multimode, preferably a two mode or quasi two-mode, optical fiber jumper between single mode pigtails. The interference of the modes propagating at different phase velocities produces a spectral pattern that shifts with temperature, strain or any perturbation of the phase difference among the modes. In this paper we review the main features of SMSs as temperature sensors and we present a potential biomedical application in an all-fiber flowmeter based on the hot-wire principle: a fiber-coupled laser source at 980 nm is used as a controllable heating source of the SMS sensor that, when immersed in fluid flow, converts the temperature variation, caused by the heat removal, into a wavelength shift of the transmitted spectrum. Thermal characterization and proof-of-concept experiments show the feasibility and functionality of the sensor and provide an outlook on possible developments and potential applications.
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