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空心负曲率光纤的飞秒激光加工

Femtosecond laser machining of hollow-core negative curvature fibres.

作者信息

Novo Catarina C, Choudhury Debaditya, Siwicki Bartlomiej, Thomson Robert R, Shephard Jonathan D

出版信息

Opt Express. 2020 Aug 17;28(17):25491-25501. doi: 10.1364/OE.394100.

Abstract

Hollow core negative curvature fibres (NCFs) are a relatively new class of microstructured optical fibre with potential applications in areas such as the delivery of high power laser light and gas sensing. For sensing, it is necessary for the measurand to interact with the guided mode. To facilitate this, a novel femtosecond laser-based machining protocol has been developed that allows the precision sculpting of access slots into the NCF core along the length of the fibre. The process is a direct-write process using a digitally defined scanning strategy with no need for physical masks or additional processing such as wet etchants and/or focussed ion beam machining. Due to the inherent flexibility of the machining strategy and the high level of control over the depth of material removal, it is likely that this new technique will be transferable to a wide range of microstructured fibres.

摘要

空心负曲率光纤(NCFs)是一类相对较新的微结构光纤,在诸如高功率激光传输和气体传感等领域具有潜在应用。对于传感而言,被测量物与导模相互作用是必要的。为便于实现这一点,已开发出一种基于飞秒激光的新型加工方案,该方案能够沿着光纤长度方向在NCF纤芯中精确雕刻出接入槽。此过程是一种直接写入过程,采用数字定义的扫描策略,无需物理掩膜或诸如湿法蚀刻剂和/或聚焦离子束加工等额外处理。由于加工策略固有的灵活性以及对材料去除深度的高度控制,这种新技术很可能可转移至多种微结构光纤。

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