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Microchanneled chirped fibre Bragg gratings for simultaneous refractive index and temperature measurements

机译:微通道chi光纤布拉格光栅可同时进行折射率和温度测量

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摘要

We report here the fabrication, charaterisation and refractive index sensing of two microchanneled chirped fiber Bragg gratings (MCFBGs) with different channel sizes (~550µm and ~1000µm). The chirped grating structures were UV-inscribed in optical fibre and the microchannels were created in the middle of the CFBGs by femtosecond (fs) laser assisted chemical etching method. The creation of microchannels in the CFBG structures gives an access to the external index liquid, thus inducing refractive index (RI) sensitivity to the structure. In comparison with previously reported FBG based RI sensors, for which the cladding layers usually were removed, the MCFBGs represent a more ideal solution for robust devices as the microchannel will not degrade the structure strength. The two MCFBGs were spectrally charaterised for their RI and temperature responses and both gratings exhibited unique thermal and RI sensitivities, which may be utilised for implementation of bio-chemical sensors with capability to eliminate temperature crosssensitivity.
机译:我们在这里报告了两种具有不同通道尺寸(〜550µm和〜1000µm)的微通道chi光纤布拉格光栅(MCFBG)的制造,表征和折射率传感。将optical光栅结构紫外刻在光纤中,并通过飞秒(fs)激光辅助化学刻蚀方法在CFBG的中间形成微通道。在CFBG结构中创建微通道可访问外部折射率液体,从而引起对结构的折射率(RI)敏感性。与以前报道的基于FBG的RI传感器(通常去除了覆层)相比,由于微通道不会降低结构强度,因此MCFBG代表了坚固耐用的设备的更理想解决方案。两个MCFBG的RI和温度响应在光谱上都具有特征,并且两个光栅都表现出独特的热和RI灵敏度,可用于实现具有消除温度交叉灵敏度的能力的生化传感器。

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