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Acid-Etched Fabry-Perot Micro-Cavities in Optical Fibres

机译:光纤中的酸蚀法布里-珀罗微腔

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摘要

Significant progress has been made in recent years on the design and fabrication of optical fibre-based sensor systems for applications in structural health monitoring. Two sensor designs have tended to dominate namely, fibre Bragg gratings and extrinsic fibre Fabry-Perot sensors. However, the cost and time associated with these sensors is relatively high and as a consequence, the current paper describes a simple procedure to fabricate intrinsic fibre Fabry-Perot interferometric strain sensors. The technique involves the use of hydrofluoric acid to etch a cavity in a cleaved optical fibre. Two such etched cavities were fusion spliced to create an intrinsic fibre Fabry-Perot cavity. The feasibility of using this device for strain monitoring was demonstrated. Excellent correlation was obtained between the optical and surface-mounted electrical resistance strain gauge.
机译:近年来,在用于结构健康监测的基于光纤的传感器系统的设计和制造方面已经取得了重大进展。两种传感器设计趋于占主导地位,即光纤布拉格光栅和非本征光纤Fabry-Perot传感器。然而,与这些传感器相关联的成本和时间相对较高,因此,当前论文描述了一种制造固有纤维法布里-珀罗干涉应变传感器的简单程序。该技术涉及使用氢氟酸蚀刻分裂光纤中的空腔。将两个这样的蚀刻腔融合在一起,以创建本征纤维Fabry-Perot腔。证明了使用该设备进行应变监测的可行性。在光学和表面安装电阻应变仪之间获得了极好的相关性。

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