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首页> 外文期刊>IEEE Photonics Technology Letters >Nonuniform Thinned Fiber Bragg Gratings for Simultaneous Refractive Index and Temperature Measurements
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Nonuniform Thinned Fiber Bragg Gratings for Simultaneous Refractive Index and Temperature Measurements

机译:用于均匀折射率和温度测量的非均匀变薄光纤布拉格光栅

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摘要

In this work, a novel method for simultaneous measurements of temperature and refractive index employing fiber Bragg gratings is presented. The principle of operation relies on the use of a single nonuniform thinned grating, where the cladding layer is partially or completely removed only in a part of the grating. The perturbation leads to a wavelength-splitting of the spectral response of the unperturbed structure in two separate peaks. The first one, corresponding to the thinned region, is sensitive to the local temperature and the surrounding refractive index changes, while the other one, related to the unperturbed part, would respond only to thermal changes. Here, wet chemical etching in a buffered hydrofluoric acid solution was used for sensor fabrication. Experimental characterization of the sensitivities to the external refractive index and temperature, varying in the range 1.33-1.45 and 15 deg C-50 deg C, respectively, is presented for a 7.6-(mu)m etched cladding sensor. The same approach can be efficiently used as key element for the development of sensors array for chemical sensing in practical applications.
机译:在这项工作中,提出了一种使用光纤布拉格光栅同时测量温度和折射率的新方法。工作原理取决于使用单个不均匀变薄的光栅,其中仅在光栅的一部分中部分或完全去除包层。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。第一个与变薄的区域相对应,对局部温度和周围的折射率变化敏感,而与未受扰的部分有关的另一个仅对热变化作出响应。这里,在缓冲氢氟酸溶液中的湿化学蚀刻被用于传感器制造。对于7.6μm的蚀刻包层传感器,提出了分别在1.33-1.45和15℃至50℃范围内变化的对外部折射率和温度的敏感性的实验表征。在实际应用中,相同的方法可以有效地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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