聚焦离子束技术在光纤光栅传感中的应用

Jin Huang, A. Alqahtani, Jaime Viegas, M. Dahlem
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引用次数: 10

摘要

光纤布拉格光栅和长周期光纤光栅在光通信系统和传感应用中有着广泛的应用。这些结构是通过沿光纤核心的紫外线诱导的折射率变化来制造的,对光栅周期和折射率分布有很好的控制。通过纳米和微加工制造光纤光栅,聚焦离子束(FIB)技术可以实现对这些结构的进一步灵活性和控制。这些FIB技术使光栅的制造具有更大的指数对比度和与环境样品更强的相互作用(理想的化学传感应用)。光纤的亚微米铣削允许用空腔调制折射率,空腔可以充满待监测的样品流体。在这项工作中,我们探索了用于传感应用的新型光纤光栅结构的设计和制造,该结构使用FIB嵌入单模光纤。通过在光纤(包层和芯)上铣削一个孔来制造一个单一的法布里-珀罗腔,以及一个基于部分蚀刻通过腔级联的长周期光栅。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fabrication of optical fiber gratings through focused ion beam techniques for sensing applications
Fiber Bragg gratings and long-period fiber gratings are widely used in optical communication systems and sensing applications. These structures are fabricated by UV-induced index changes along the core of a fiber, with fine control over the grating period and refractive index profile. Further flexibility and control over these structures can be achieved with focused ion beam (FIB) techniques, by fabricating fiber gratings through nano- and micro-machining. These FIB techniques enable the fabrication of gratings with larger index contrast and stronger interaction with environmental samples (ideal for chemical sensing applications). The sub-micron milling of the fibers allows modulating the refractive index with air voids, which can be filled with the sample fluid to be monitored. In this work we explore the design and fabrication of novel fiber grating configurations for sensing applications, inscribed on single-mode fibers using FIB. A single Fabry-Perot cavity is fabricated by milling a hole through the fiber (cladding and core), as well as a long-period grating based on a cascade of partially-etched-through cavities.
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