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An Optical Fiber Sensor Based on La2O2S:Eu Scintillator for Detecting Ultraviolet Radiation in Real-Time

机译:基于La2O2S:Eu闪烁体的光纤传感器可实时检测紫外线辐射

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摘要

A novel ultraviolet (UV) optical fiber sensor (UVOFS) based on the scintillating material La2O2S:Eu has been designed, tested, and its performance compared with other scintillating materials and other conventional UV detectors. The UVOFS is based on PMMA (polymethyl methacrylate) optical fiber which includes a scintillating material. Scintillating materials provide a unique opportunity to measure UV light intensity even in the presence of strong electromagnetic interference. Five scintillating materials were compared in order to select the most appropriate one for the UVOFS. The characteristics of the sensor are reported, including a highly linear response to radiation intensity, reproducibility, temperature response, and response time (to pulsed light) based on emission from a UV source (UV fluorescence tube) centered on a wavelength of 308 nm. A direct comparison with the commercially available semiconductor-based UV sensor proves the UVOFS of this investigation shows superior performance in terms of accuracy, long-term reliability, response time and linearity.
机译:已经设计,测试了一种基于闪烁材料La2O2S:Eu的新型紫外线(UV)光纤传感器(UVOFS),并将其性能与其他闪烁材料和其他常规UV检测器进行了比较。 UVOFS基于包括闪烁材料的PMMA(聚甲基丙烯酸甲酯)光纤。闪烁材料即使在强烈的电磁干扰下也提供了测量紫外线强度的独特机会。比较了五种闪烁材料,以便为UVOFS选择最合适的一种。报告了传感器的特性,包括对辐射强度,重现性,温度响应和响应时间(对脉冲光)的高度线性响应,这些响应基于以308 nm为中心的UV源(UV荧光管)的发射。与市场上可买到的基于半导体的紫外线传感器的直接比较证明,这项研究的UVOFS在准确性,长期可靠性,响应时间和线性方面显示出优异的性能。

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