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Multi-parameter harsh environment sensing using asymmetric Bragg gratings inscribed by IR femtosecond irradiation

机译:飞秒辐照非对称布拉格光栅进行多参数恶劣环境传感

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In this paper, we review our recent work on multi-parameter harsh environment sensing using asymmetric Bragg gratings inscribed by IR femtosecond irradiation, which inCIudes the investigations of fiber Bragg gratings inscribed by graded-index silica multimode fibers and polarization maintaining (PM) single mode fibers. The unique features of this type of grating are: (1) formed by multi-photon ionization, this kind of grating can withstand temperature as high as 1000℃, which makes it suitable for harsh environment sensing; (2) bending (or pressure, strain) and ambient temperature fluctuations affect the shapes of multiple transmission dips in different ways, which enables multi-parameter sensing capability. The principle of multi-parameter sensing of the multimode fiber gratings is based on the fact that multimode fiber gratings have multiple resonant dips in spectrum and the change of spectral shape is different for different types of perturbations (e.g., temperature and pressure). The main challenge of sensing using multimode fiber is that the shape of spectrum also depends on the excitation condition, which makes the analysis of the sensing data complicated. On the other hand, the PM single mode fiber supports only two linearly polarized modes, which results in two resonant dips in the transmission spectrum. Since measured parameters such as the temperature and bending affect the transmission spectrum of two dips in different ways, one can implement multi-parameter sensing in harsh environment using PM fiber. Note that it is much easier to analyze the data of two dips (in the case of PM fibers) instead of multiple dips (in the case of multimode fibers). Finally, we also investigate the ultra thin multimode and PM single mode harsh environment fiber gratings for multi-parameter sensing applications. After etching the most part of the CIadding, both multimode and PM single mode fiber grating spectra become sensitive to ambient refractive index changes, and their sensitivity to bending and strain is also enhanced. This enables the application for multi-parameter chemical/bio and pressure sensing.
机译:在本文中,我们回顾了我们最近使用红外飞秒辐射刻画的非对称布拉格光栅进行多参数恶劣环境传感的工作,这包括对渐变折射率二氧化硅多模光纤和偏振保持(PM)单模刻写的光纤布拉格光栅的研究。纤维。这种光栅的独特之处在于:(1)通过多光子电离形成,这种光栅可以承受高达1000℃的温度,适合于恶劣的环境传感; (2)弯曲(或压力,应变)和环境温度波动以不同的方式影响多个变速箱倾角的形状,从而实现了多参数传感功能。多模光纤光栅的多参数感测原理是基于这样的事实,即多模光纤光栅在频谱上具有多个共振谷,并且对于不同类型的扰动(例如,温度和压力),频谱形状的变化是不同的。使用多模光纤进行传感的主要挑战在于频谱的形状还取决于激发条件,这使得传感数据的分析变得复杂。另一方面,保偏单模光纤仅支持两个线性偏振模,这导致了传输频谱中的两个谐振谷。由于诸如温度和弯曲之类的测量参数以不同的方式影响两次倾斜的透射光谱,因此人们可以使用PM光纤在恶劣的环境中实现多参数传感。请注意,分析两次跌落(对于PM光纤)而不是多次跌落(对于多模光纤)的数据要容易得多。最后,我们还研究了用于多参数传感应用的超薄多模和PM单模恶劣环境光纤光栅。蚀刻大部分CIadding之后,多模和PM单模光纤光栅光谱都对环境折射率变化敏感,并且它们对弯曲和应变的敏感度也得到了增强。这使多参数化学/生物和压力传感应用成为可能。

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