Mode Coupling Theory for Evanescent Wave Optical Fiber Sensors

R. Parnas, D. L. Woerdeman
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Abstract

Optical fiber based sensors have potential in the composites processing industry as well as many other industries, but cost and robustness often mitigate the advantages of optical fiber sensors. The least expensive type of optical fiber sensor is a length of fiber either embedded in the part or in distal contact with the part surface. In the case of embedded evanescent mode sensors, important issues hinge on interpreting the evanescent signal obtained during processing or in service inspection. An optical model based on mode coupling theory is presented below to provide a description of the sensing volume around the fiber from which signal is collected during evanescent measurements. The model is developed for a fluorescence sensor but the optical theory could be equally applied for infrared or other types of optical fiber sensors.
倏逝波光纤传感器模式耦合理论
基于光纤的传感器在复合材料加工行业以及许多其他行业中具有潜力,但成本和鲁棒性往往削弱了光纤传感器的优势。最便宜的光纤传感器类型是嵌入在零件中或与零件表面远端接触的一段光纤。对于嵌入式倏逝模式传感器,重要的问题在于如何解释在处理或服务检测中获得的倏逝信号。下面提出了一个基于模式耦合理论的光学模型,以提供在倏逝测量期间收集信号的光纤周围的传感体积的描述。该模型是为荧光传感器开发的,但光学理论同样适用于红外或其他类型的光纤传感器。
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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