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Simplifying the design of microstructured optical fibre pressure sensors

机译:简化微结构光纤压力传感器的设计

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摘要

In this paper, we propose a way to simplify the design of microstructured optical fibres with high sensitivity to applied pressure. The use of a capillary fibre with an embedded core allows the exploration of the pressure-induced material birefringence due to the capillary wall displacements and the photoelastic effect. An analytical description of pressure-induced material birefringence is provided, and fibre modal characteristics are explored through numerical simulations. Moreover, a capillary fibre with an embedded core is fabricated and used to probe pressure variations. Even though the embedded-core fibre has a non-optimized structure, measurements showed a pressure sensitivity of (1.04 ± 0.01) nm/bar, which compares well with more complex, specially designed fibre geometries reported in the literature. These results demonstrate that this geometry enables a novel route towards the simplification of microstructured fibre-based pressure sensors.
机译:在本文中,我们提出了一种简化对施加压力敏感的微结构光纤设计的方法。使用具有嵌入式纤芯的毛细管纤维可以探索由于毛细管壁位移和光弹性效应而引起的压力诱导材料的双折射。提供了压力诱导材料双折射的分析描述,并通过数值模拟探索了纤维的模态特性。此外,制造了具有嵌入式纤芯的毛细管纤维,并用于探测压力变化。尽管包芯光纤的结构没有优化,但测量结果显示其压敏度为(1.04±±0.01)nm / bar,与文献中报道的更复杂,经过特殊设计的光纤几何结构相比具有很好的可比性。这些结果表明,这种几何形状为简化基于纤维的微结构压力传感器提供了一条新颖的途径。

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