Optimal design of the fluorescence sensors based on step-index multimode optical fibers

Yingxin Zeng, Zhe Chen, Rongsheng Chen, Y. Liao, Jianhui Yu, Huihui Lu, Xindan Chen
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Abstract

A fluorescence fiber sensor based on step-index multimode optical fibers is simulated and design by beam propagation method with Beamprop module of Rsoft-CAD software, in the requirement of the much more exciting light in fluorescent material coated on the fiber core. The normalized exciting light power in the coating layer is calculated and analyzed. According to the numerical optimal results, the refractive index no of fluorescent material layer is 1.49, and the optimal external diameter of coated layer should be greater than 206μm.
基于阶跃折射率多模光纤的荧光传感器优化设计
针对光纤芯上涂覆荧光材料产生更强激发光的要求,利用Rsoft-CAD软件中的Beamprop模块,采用光束传播法对基于阶跃折射率多模光纤的荧光光纤传感器进行了仿真设计。计算并分析了镀膜层的归一化激发光功率。根据数值优化结果,荧光材料层的折射率为1.49,涂层的最佳外径应大于206μm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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