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Research on Fused Tapered Photonic Crystal Fiber Sensor Based on the Method of Intermittent Cooling

机译:基于间歇冷却方法的熔融锥形光子晶体光纤传感器研究

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摘要

Based on the intermittent cooling method, a fused tapered Photonic Crystal Fiber (PCF) interferometer is proposed. In the process of tapering, stop heating and wait for cooling at different taper length. Repeat heating and cooling, until taper goes to the expected length. Compared with the ordinary fused tapered method, the fringe contrast of the transmission spectra of this sensor is 15.06 dB. The transmission spectra in different concentrations of glycerol solution are obtained, and the temperature cross-sensitivity of the sensor is studied. The experimental results show that as the external refractive index increases, the transmission spectra of the sensor shift to longer wavelength. In the measuring glycerol solution, the refractive index sensitivity of the sensor can achieve 797.674 nm/RIU, and the temperature sensitivity is only 0.00125 nm/°C.
机译:基于间歇冷却方法,提出了一种稠合锥形光子晶体纤维(PCF)干涉仪。在逐渐变细,停止加热并等待在不同的锥度下冷却。重复加热和冷却,直到锥度进入预期长度。与普通熔融锥形方法相比,该传感器的透射光谱的条纹对比为15.06dB。获得不同浓度的甘油溶液中的透射光谱,研究了传感器的温度交叉敏感性。实验结果表明,随着外部折射率的增加,传感器的透射光谱转移到更长的波长。在测量甘油溶液中,传感器的折射率灵敏度可以实现797.674nm / Riu,温度敏感性仅为0.00125nm /℃。

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