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Fabrication, splicing, Bragg grating writing, and polyelectrolyte functionalization of exposed-core microstructured optical fibers

机译:制造,拼接,布拉格光栅写入和暴露核心微结构光纤的聚电解质功能化

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摘要

Femtosecond laser written Bragg gratings have been written in exposed-core microstructured optical fibers with core diameters ranging from 2.7 µm to 12.5 µm and can be spliced to conventional single mode fiber. Writing a Bragg grating on an open core fiber allows for real-time refractive index based sensing, with a view to multiplexed biosensing. Smaller core fibers are shown both experimentally and theoretically to provide a higher sensitivity. A 7.5 µm core diameter fiber is shown to provide a good compromise between sensitivity and practicality and was used for monitoring the deposition of polyelectrolyte layers, an important first step in developing a biosensor.
机译:飞秒激光写入的布拉格光栅已写入纤芯直径范围为2.7 µm至12.5 µm的裸露的纤芯微结构光纤中,并可与常规单模光纤拼接。在开放式纤芯光纤上写入布拉格光栅可实现基于实时折射率的传感,从而实现多重生物传感。实验和理论上均显示较小的芯纤维可提供更高的灵敏度。纤芯直径为7.5 µm的光纤在灵敏度和实用性之间取得了很好的折衷,并被用于监测聚电解质层的沉积,这是开发生物传感器的重要第一步。

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