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首页> 外文期刊>Photonics Technology Letters, IEEE >Microfiber Bragg Grating Sandwiched Between Standard Optical Fibers for Enhanced Temperature Sensing
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Microfiber Bragg Grating Sandwiched Between Standard Optical Fibers for Enhanced Temperature Sensing

机译:夹在标准光纤之间的超细光纤布拉格光栅可增强温度感测

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摘要

Ultrafast laser-based direct writing of a millimeter long Bragg grating in a microfiber spliced between standard single-mode fibers is presented for highly sensitive temperature measurement. Periodic filamentary voids are written in the core of microfiber using point-by-point inscription method to achieve refractive index modulation. The structural configuration of the sensor offers strong grasp around the microfiber grating when buried in materials of higher thermal expansion coefficients. Any change in ambient temperature causes the molding material to apply higher thermal strain on the grating and amplifies its temperature sensitivity. A maximum temperature sensitivity of 479.48 pm/°C is demonstrated when molded with acetal. The proposed fiber structure can also potentially allow the molding/coating materials to retain strong grip around the fiber in event of adhesion weakening.
机译:提出了基于超快激光的,在标准单模光纤之间拼接的微纤维中直接写入毫米长的布拉格光栅的方法,用于高度敏感的温度测量。使用逐点写入方法将周期性的丝状空隙写入微纤维的芯中,以实现折射率调制。当传感器的结构配置埋在具有较高热膨胀系数的材料中时,可以很好地抓住微纤维光栅。环境温度的任何变化都会导致模制材料在光栅上施加更高的热应变,并放大其温度敏感性。用乙缩醛模塑时,最高温度敏感性为479.48 pm /°C。所提出的纤维结构还可能潜在地使模制/涂层材料在粘合力减弱的情况下在纤维周围保持牢固的附着力。

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