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Characterization of refractive index change and fabrication of long period gratings in pure silica fiber by femtosecond laser radiation

机译:飞秒激光辐射在纯石英纤维中折射率变化的表征和长周期光栅的制造

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摘要

Ultrafast laser induced refractive index (RI) change in the core of a standard telecommunication fiber is quantified using the spectral shift of an in-fiber Bragg grating (FBG) based Fabry-Perot cavity. Measured RI change is used to design and then fabricate long period grating (LPG) in pure silica core single mode fiber (SMF) employing identical laser irradiation conditions used in core index characterization. A core length of 100 gm within the 10 mm long cavity structure is scanned with ultrafast laser pulses, and the corresponding spectral shift is used to calculate index modification. The index change of 0.000449 found in characterization process is used to simulate the LPG in pure silica fiber. Identical index modulation written in pure silica fiber by femtosecond laser radiation provides a rejection band that is in good agreement with the simulation results. The fabricated LPG sensors are also characterized for ambient temperature and RI. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使用基于光纤内布拉格光栅(FBG)的Fabry-Perot腔的光谱偏移,可以量化标准电信光纤纤芯中超快激光诱导的折射率(RI)的变化。所测量的RI变化用于设计和制造纯石英纤芯单模光纤(SMF)中的长周期光栅(LPG),并采用与纤芯折射率表征相同的激光照射条件。用超快激光脉冲扫描10毫米长空腔结构内的100克核长,并使用相应的光谱偏移来计算折射率修正。表征过程中发现的0.000449的指数变化用于模拟纯石英纤维中的LPG。飞秒激光辐射在纯石英纤维中写入的相同折射率调制提供了与模拟结果非常吻合的抑制带。制成的LPG传感器还具有环境温度和RI的特性。 (C)2015 Elsevier Ltd.保留所有权利。

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