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A miniature high temperature fiber optics Sensor based on tapered dual-core photonic crystal fiber

机译:基于锥形双芯光子晶体纤维的微型高温光纤传感器

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The optical fiber temperature sensor based on the coupling mechanism of the miniature pull-tapered dual-core photonic crystal fiber has been designed. The dual-core photonic crystal fiber coupling structure was realized by tapering the two cores of the dual-core photonic crystal fiber transversely. At the same time, the end surface of the fusion taper of the dual-core photonic crystal fiber was plated with a total reflection film, thereby a reflective dual-core micro-fiber pull-taper coupler developed. According to the above-mentioned reflective fiber coupler light guide transmission mode, combined with optical waveguide theory, the coupling mechanism of the dual-core photonic crystal fiber was studied, and the relationship between the structure of the dual-core photonic crystal fiber coupler and its light guide characteristics is studied. The increase of the effective refractive index and the coupling length will cause the center-wavelength of the fiber coupler to shift to the long wavelength direction, and the increase of the coupling diameter will cause the center wavelength of the fiber coupler to shift to the short wavelength direction. Based on the above mechanism, an optical fiber temperature sensor based on a miniaturized dual-core photonic crystal fiber coupling structure was developed, and the temperature response characteristics of the sensor were studied and analyzed through experiments. The experimental results show that the measurement temperature range of the miniaturized dual-core photonic crystal fiber temperature sensor can be from 96°C to 1425°C ,and the temperature sensitivity is 0.024nm/°C. The miniaturized dual-core photonic crystal fiber temperature sensor has the advantages of miniaturization, large range, high sensitivity, and immunity to electromagnetic interference.
机译:设计了基于微型拉锥形双芯光子晶体光纤的耦合机构的光纤温度传感器。通过横向逐渐逐渐逐渐逐渐逐渐逐渐逐渐逐渐逐渐逐渐逐渐逐渐逐渐逐渐变细双芯光子晶体光纤耦合结构。同时,将双核光子晶体纤维的融合锥的端面用全反射膜铺板,从而开发了反射双芯微纤维拉锥耦合器。根据上述反射光纤耦合器光导传动模式,与光波导理论结合,研究了双芯光子晶体纤维的耦合机构,以及双核光子晶体光纤耦合器的结构与研究了它的光导特性。有效折射率的增加和耦合长度将导致光纤耦合器的中心波长转移到长波长方向,并且耦合直径的增加将导致光纤耦合器的中心波长转移到短路波长方向。基于上述机构,开发了一种基于小型化双核光子光子晶体纤维耦合结构的光纤温度传感器,研究了传感器的温度响应特性并通过实验分析。实验结果表明,小型二核光子光子晶体纤维温度传感器的测量温度范围可以为96℃至1425℃,温度敏感性为0.024nm /°C。小型化双核光子晶体纤维温度传感器具有小型化,范围大,灵敏度高,抗扰动的优点。

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