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Simultaneous force and temperature measurement using long-period grating written on the joint of a microstructured optical fiber and a single mode fiber

机译:使用写在微结构光纤和单模光纤接头上的长周期光栅同时测量力和温度

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摘要

A novel approach to simultaneous force and temperature measurement is proposed and demonstrated in this paper. The sensing element is based on a single long-period grating (LPG) formed by irradiating the joint of a microstructured optical fiber (MOF) and standard single mode fiber (SMF) with CO_(2) laser pulses. The grating exhibits two groups of attenuation bands with distinctly different responses to temperature and force: the resonant notches in the MOF involving couplings between fundamental mode and core LP_(11) modes are almost temperature insensitive but highly sensitive to force, while resonant notches in the SMF coming out of couplings between fundamental mode and cladding modes show high sensitivity to temperature but marginal sensitivity to force. Based on the LPG, a simple and efficient dual-parameter sensor simultaneously measuring temperature and force with a sensitivity of approx0.086 nm/(deg C) and approx - 2.18 nm/N, respectively, is achieved. Furthermore, we propose a simple sensing configuration for simultaneous strain and temperature measurement.
机译:本文提出并演示了一种同时进行力和温度测量的新颖方法。传感元件基于单个长周期光栅(LPG),该光栅通过用CO_(2)激光脉冲照射微结构光纤(MOF)和标准单模光纤(SMF)的接合处而形成。光栅表现出两组衰减带,它们对温度和力的响应明显不同:MOF中涉及基本模式和核心LP_(11)模式之间耦合的共振切口几乎对温度不敏感,但对力高度敏感,而在共振频率中则为从基本模式和包层模式之间的耦合产生的SMF对温度具有较高的灵敏度,但对力的灵敏度却很小。基于LPG,实现了一种简单高效的双参数传感器,其同时以大约0.086 nm /(℃)和大约-2.18 nm / N的灵敏度测量温度和力。此外,我们提出了一种用于同时进行应变和温度测量的简单传感配置。

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