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Simultaneous Measurements of Refractive Index and Temperature by Non-Uniform Thinned Fiber Bragg Gratings

机译:非均匀变薄光纤布拉格光栅同时测量折射率和温度

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In this work, the use of non uniform thinned Fiber Bragg Gratings (ThFBGs) for the simultaneous measurements of temperature and refractive index is proposed. The proposed technique relies on the use of partial thinned FBG: along half of the grating length the cladding layer is partially or totally removed, while the remaining part is unchanged. The perturbation leads to a wavelength-splitting of the spectral response of the unperturbed structure in two separate peaks in dependence of the outer refractive index and the local temperature. The peak at lower wavelengths corresponds to the etched region and is dependent on the outer refractive index and the local temperature, while the peak at longer wavelength is related to the original structure and thus is dependent only on the local temperature. The simultaneous measurements of the Bragg wavelengths related to the two regions allow the accurate measurements of the refractive index and the temperature by using a single sensing element, simultaneously. Here, wet chemical etching in a buffered hydrofluoric acid (HF) solution was used for sensor fabrication. Experimental characterization for a 7.6 μm etched cladding sensor is presented. The same approach can be used as key element for the development of sensors array for chemical sensing in practical applications.
机译:在这项工作中,提出了使用非均匀变薄的光纤布拉格光栅(ThFBGs)来同时测量温度和折射率。所提出的技术依赖于部分减薄的FBG的使用:沿着光栅长度的一半,覆盖层被部分或全部去除,而其余部分则保持不变。取决于外部折射率和局部温度,扰动导致未扰动结构的光谱响应在两个单独的峰中发生波长分裂。较低波长处的峰对应于蚀刻区域,并取决于外部折射率和局部温度,而较长波长处的峰与原始结构有关,因此仅取决于局部温度。与两个区域有关的布拉格波长的同时测量允许通过使用单个传感元件同时精确地测量折射率和温度。在这里,在缓冲氢氟酸(HF)溶液中的湿法化学蚀刻被用于传感器的制造。给出了7.6μm蚀刻包层传感器的实验特性在实际应用中,相同的方法可用作开发用于化学传感的传感器阵列的关键要素。

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