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Optical RI sensor based on an in-fiber bragg grating fabry-perot cavity embedded with a micro-channel

机译:基于嵌有微通道的光纤布拉格光栅法拉第腔的光学RI传感器

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摘要

We report a linear response optical refractive index (RI) sensor, which is fabricated based on a micro-channel created within a Fabry Perot (F-P) cavity by chemical etching assisted by femtosecond laser inscription. The experimental results show the F-P resonance peak has a linear response with the RI of medium and the measuring sensitivity is proportion to the length of micro-channel. The sensor with 5 μm -long micro-channel exhibited an RI sensitivity of 1.15nm/RIU and this sensitivity increased to 9.08nm/RIU when widening the micro-channel to 35μm. Furthermore, such micro-channel FP sensors show a much broader RI sensing dynamic range (from 1.3 to 1.7) than other reported optical fiber sensors.
机译:我们报告了一种线性响应光学折射率(RI)传感器,该传感器是基于飞秒激光铭文辅助的化学蚀刻在法布里·珀罗(F-P)腔内创建的微通道的基础上制造的。实验结果表明,F-P共振峰与介质的RI呈线性响应,测量灵敏度与微通道的长度成正比。具有5μm长微通道的传感器显示的RI灵敏度为1.15nm / RIU,当将微通道扩展到35μm时,此灵敏度增加到9.08nm / RIU。此外,这种微通道FP传感器显示的RI感测动态范围比其他报告的光纤传感器要宽得多(从1.3到1.7)。

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