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Strain and curvature-independent temperature sensor based on an interferometer taper fabricated with a CO2 laser

机译:基于由CO2激光器制造的干涉仪锥度的与应变和曲率无关的温度传感器

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摘要

An optical fiber interferometer taper fabricated with a CO2 laser is proposed for strain and curvature-independent temperature measurement. Variations in temperature produce changes in the conditions of the interference between light traveling along the core and cladding and a linear behavior is verified for the relation between the wavelength of the resonant loss peak and temperature, yielding a sensitivity of 110 pm/degrees C for a range between 25 and 510 degrees C. Both the applied strain and curvature only promote significant changes in the transmitted power, leaving the wavelength of the resonant loss peak approximately constant and rendering this optical sensing device a good strain and curvature-independent temperature sensor. (c) 2016 Wiley Periodicals, Inc.
机译:提出了一种用二氧化碳激光器制造的光纤干涉仪锥度,用于与应变和曲率无关的温度测量。温度的变化会导致沿纤芯和包层传播的光之间的干涉条件发生变化,并且针对谐振损耗峰的波长与温度之间的关系验证了线性行为,从而产生了110 pm /℃的灵敏度。温度范围在25到510摄氏度之间。所施加的应变和曲率都只会促进传输功率的显着变化,而使谐振损耗峰的波长大致保持恒定,从而使该光学传感设备成为一个与应变和曲率无关的良好温度传感器。 (c)2016年威利期刊有限公司

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