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Fluorescein filled photonic crystal fiber sensor for simultaneous ultraviolet light and temperature monitoring

机译:荧光素填充光子晶体光纤传感器,可同时监测紫外线和温度

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摘要

We present a novel structure composed of a photonic crystal fiber filled with fluorescein dissolved in water spliced between two conventional multimode fibers. Based on unique features of the fluorescein luminescence it is possible to adjust its emission spectrum to required spectral region. With increasing value of the fluorescein solvent pH factor, the peak wavelength of the emission spectrum is shifting to longer wavelength values. Since the excitation spectrum of fluorescein is relatively wide, this optical fiber sensor could be used for an efficient ultraviolet light monitoring. The detection limit at the level 0.24 mW with 490 nm excitation wavelength is presented. Moreover the emission spectrum is temperature sensitive what provides possibility of simultaneous ultraviolet light and temperature monitoring. Also the temperature sensitivity of the structure based on intermodal interference investigation for a compensation purposes and structure usage as spectrum enlarger are outlined. (C) 2016 Elsevier Inc. All rights reserved.
机译:我们提出了一种新颖的结构,该结构由填充有溶于水中的荧光素的光子晶体光纤组成,该光纤拼接在两个常规多模光纤之间。基于荧光素发光的独特特征,可以将其发射光谱调整到所需的光谱区域。随着荧光素溶剂pH因子值的增加,发射光谱的峰值波长正在移到更长的波长值。由于荧光素的激发光谱相对较宽,因此该光纤传感器可用于有效的紫外线监测。给出了在490 nm激发波长下0.24 mW的检测限。此外,发射光谱是温度敏感的,这提供了同时进行紫外线和温度监测的可能性。还概述了基于模态干扰调查的结构的温度敏感性,以进行补偿,并概述了将结构用作频谱扩展器。 (C)2016 Elsevier Inc.保留所有权利。

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