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Evaluation of Brillouin frequency shift and its temperature dependence in poly(pentafluorostyrene)-based polymer optical fibers by ultrasonic pulse-echo technique

机译:超声脉冲回波技术评估聚五氟苯乙烯基聚合物光纤中布里渊频移及其温度依赖性

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Poly(pentafluorostyrene) (PPFS), which can be easily synthesized and has a low optical loss window at 850 nm, is a promising alternative for a costly perfluorinated polymer as a base material of polymer optical fibers (POFs). To investigate the potential of a PPFS-POF as a Brillouin-based temperature sensing fiber, the Brillouin frequency shift and its temperature dependence of PPFS were estimated using an ultrasonic pulse-echo technique. The temperature coefficient, which determines the sensitivity of the temperature sensing, was approximately -7.1 MHz/K independently of the molecular weight and was nearly identical to that in perfluorinated POFs.
机译:聚五氟苯乙烯(PPFS)易于合成,在850 nm处的光损耗窗口低,是一种昂贵的全氟化聚合物作为聚合物光纤(POF)基材的有前途的替代方法。为了研究PPFS-POF作为基于布里渊的温度传感光纤的潜力,使用超声脉冲回波技术估算了布里渊频移及其对PPFS的温度依赖性。决定温度感应灵敏度的温度系数约为-7.1 MHz / K,与分子量无关,并且与全氟化POF中的温度系数几乎相同。

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