光纤飞秒激光加工用于新型传感器的研制

K. Kalli, A. Theodosiou, A. Ioannou, A. Lacraz
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引用次数: 7

摘要

我们介绍了最近的研究成果,我们利用飞秒激光微结构二氧化硅和聚合物光纤,以实现多用途的光学元件,如光纤端面上的衍射光学元件,光纤包层上的集成波导电路和基于核心布拉格光栅的新型光纤传感器设计。裁剪或修改光纤特性的一个主要障碍是开发一种刻字方法,这种方法可以证明是一种灵活可靠的过程,通常适用于所有类型的光纤;这需要仔细匹配激光参数和光学器件,以便检查直接激光书写的空间限制,无论应用是在光纤表面构造还是在光纤的芯层和包层上刻字。我们展示了各种光学元件,如二维光栅结构,贝塞尔,艾里和涡旋光束发生器;此外,在单模光纤包层中嵌入光桥波导,作为从单芯到多芯光纤选择性耦合光的手段,并演示了基于光栅的传感器;最后,我们开发了一种新的飞秒激光刻字方法,用于在二氧化硅和聚合物光纤中精确刻字定制布拉格光栅传感器。我们还表明,这种新颖的光纤布拉格光栅刻字技术可以用于修改和增加现有的封装光纤压力传感器的多功能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Femtosecond laser processing of optical fibres for novel sensor development
We present results of recent research where we have utilized a femtosecond laser to micro-structure silica and polymer optical fibres in order to realize versatile optical components such as diffractive optical elements on the fibre end face, the inscription of integrated waveguide circuits in the fibre cladding and novel optical fibre sensors designs based on Bragg gratings in the core. A major hurdle in tailoring or modifying the properties of optical fibres is the development of an inscription method that can prove to be a flexible and reliable process that is generally applicable to all optical fibre types; this requires careful matching of the laser parameters and optics in order to examine the spatial limits of direct laser writing, whether the application is structuring at the surface of the optical fibre or inscription in the core and cladding of the fibre. We demonstrate a variety of optical components such as two-dimensional grating structures, Bessel, Airy and vortex beam generators; moreover, optical bridging waveguides inscribed in the cladding of singlemode fibre as a means to selectively couple light from single-core to multi-core optical fibres, and demonstrate a grating based sensor; finally, we have developed a novel femtosecond laser inscription method for the precise inscription of tailored Bragg grating sensors in silica and polymer optical fibres. We also show that this novel fibre Bragg grating inscription technique can be used to modify and add versatility to an existing, encapsulated optical fibre pressure sensor.
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