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Characterization of twin Bragg gratings for sensor application

机译:传感器应用的双布拉格光栅的表征

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Twin gratings are important devices for sensor application. They are formed by two gratings inscribed in cascade in a single fiber. We present here a detailed study of twin Bragg gratings. We first show the evolution of twin Bragg gratings spectra versus the spacing between the gratings and their length. Owing to the coupled mode theory, we explain the particular shape of the various spectra. Then we demonstrate the influence of the reflectivity of each Fiber Bragg Grating on the global spectral response of the two cascaded FBGs. All the gratings we have inscribed are simulated using the Transfer Matrix Method in order to retrieve their parameters (grating length, period, index modulation and distance between gratings)from experimental reflection spectra. Finally we characterize these FBGs for temperature sensing. We discuss the design suitable to sensor applications and describe the interrogation technique used in this case. We use a digital algorithm based on Fast Fourier Transform. It offers precise, fast and absolute measurements.
机译:双重光栅是传感器应用的重要装置。它们由在单纤维中的级联中刻有两种光栅形成。我们在这里介绍了对双语布拉格光栅的详细研究。我们首先展示了双语布拉格光谱与光栅之间的间距和长度之间的进化。由于耦合模式理论,我们解释了各种光谱的特定形状。然后,我们展示了每个光纤布拉格光栅对两个级联FBG的全局光谱响应的影响的影响。我们已经刻录的所有光栅都是使用传递矩阵法模拟的,以便从实验反射光谱检索它们的参数(光栅长度,周期,索引调制和光栅之间的距离)。最后,我们描述了这些FBGS进行温度感测。我们讨论适合传感器应用的设计,并描述这种情况下使用的询问技术。我们使用基于快速傅里叶变换的数字算法。它提供精确,快速和绝对的测量。

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