Large-area fiber optic chemical sensors

M. Bliss, R. A. Craig
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Abstract

Pacific Northwest Laboratory is developing a large-area chemical sensor that combines chemically coatings and optical spectroscopy to detect target compounds. The chemically selective material is incorporated into the cladding of an optical fiber waveguide. The material is interrogated using optical spectroscopic techniques to determine the concentration of target compounds. The optical interrogation method includes two spectroscopies: visible-near infrared absorption spectroscopy and Raman spectroscopy. This work develops the physical and mathematical models of such a sensor and provides a set of tools with which to make design predictions for the large-area chemical sensors. The theoretical relationships derived herein allow the use of bulk absorption parameters and bulk Raman coefficients to predict sensor performance.
大面积光纤化学传感器
太平洋西北实验室正在开发一种大面积化学传感器,它结合了化学涂层和光谱学来检测目标化合物。化学选择性材料被加入到光纤波导的包层中。材料被询问使用光学光谱技术来确定目标化合物的浓度。光学讯问方法包括两种光谱:可见-近红外吸收光谱和拉曼光谱。本工作发展了这种传感器的物理和数学模型,并提供了一套工具,用于对大面积化学传感器进行设计预测。本文导出的理论关系允许使用体吸收参数和体拉曼系数来预测传感器的性能。
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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