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The Tension Sensor of Photonic Crystal Fiber Based on Core-offset Splicing and Waist-enlarged Fiber Taper

机译:基于芯偏移拼接和腰部扩大纤维锥度光子晶体纤维的张力传感器

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A tension sensor of Photonic Crystal Fiber(PCF) is presented based on core-offset splicing and waist-enlarged fiber taper. The tension response characteristics of the sensor are studied experimentally. To analyzing the modal interference, many samples with different PCF lengths between the two splicing areas, different core-offset distances and different waist-enlarged fiber taper diameters are fabricated and tested. When the tension range is 0 to 4000εμ, the results show that the spectrum is blue shift with the increasing of the axial tension.The sensitivity is-2.1 pm/εμ. The experimental results show that the tension sensitivity can be not influenced by the PCF lengths, the core-offset distances.The waist-enlarged fiber taper diameters and the tension sensor is very sensitive to axial tension and the relationship between the wavelength shift and tension is linearity. To determine the number of the interfering modes, the transmission spectra of these sensor is transformed by the fast fourier transform(FFT) method. There are several peaks in the spatial frequency spectra at these sensors. Only one cladding mode is dominantly excited, while the other cladding modes are weak. The spatial frequency is proportional to the differential mode group index. Compared with the traditional fiber sensor, this sensor has some advantages including the easily fabricated, simple structure and high sensitivity. It can be used in industrial production, building monitoring, aerospace and other fields.
机译:基于芯偏移剪接和腰部扩大纤维锥度,提出了光子晶体纤维(PCF)的张力传感器。通过实验研究传感器的张力响应特性。为了分析模态干扰,制造和测试在两个拼接区域,不同的芯偏差和不同腰部扩大的纤维锥形直径之间具有不同PCF长度的许多样品。当张力范围为0至4000μm时,结果表明,随着轴向张力的增加,光谱是蓝色转变。灵敏度为-2.1 PM /εμ。实验结果表明,张力灵敏度不能受到PCF长度的影响,芯偏差距离。腰部扩大的纤维锥距和张力传感器对轴向张力非常敏感,波长换档和张力之间的关系是非常敏感的线性。为了确定干扰模式的数量,这些传感器的透射光谱由快速傅里叶变换(FFT)方法进行变换。这些传感器的空间频谱中有几个峰值。只有一个覆层模式是显着的兴奋,而另一个包层模式很弱。空间频率与差分模式组索引成比例。与传统光纤传感器相比,该传感器具有一些优点,包括易于制造,结构简单,灵敏度高。它可用于工业生产,建筑监测,航空航天等领域。

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