Sandoghchi S R, Jasion G T, Wheeler N V, Jain S, Lian Z, Wooler J P, Boardman R P, Baddela N, Chen Y, Hayes J, Fokoua E Numkam, Bradley T, Gray D R, Mousavi S M, Petrovich M, Poletti F, Richardson D J
Opt Express. 2014 Oct 20;22(21):26181-92. doi: 10.1364/OE.22.026181.
Specialty optical fibers, in particular microstructured and multi-material optical fibers, have complex geometry in terms of structure and/or material composition. Their fabrication, although rapidly developing, is still at a very early stage of development compared with conventional optical fibers. Structural characterization of these fibers during every step of their multi-stage fabrication process is paramount to optimize the fiber-drawing process. The complexity of these fibers restricts the use of conventional refractometry and microscopy techniques to determine their structural and material composition. Here we present, to the best of our knowledge, the first nondestructive structural and material investigation of specialty optical fibers using X-ray computed tomography (CT) methods, not achievable using other techniques. Recent advances in X-ray CT techniques allow the examination of optical fibers and their preforms with sub-micron resolution while preserving the specimen for onward processing and use. In this work, we study some of the most challenging specialty optical fibers and their preforms. We analyze a hollow core photonic band gap fiber and its preforms, and bond quality at the joint between two fusion-spliced hollow core fibers. Additionally, we studied a multi-element optical fiber and a metal incorporated dual suspended-core optical fiber. The application of X-ray CT can be extended to almost all optical fiber types, preforms and devices.
特种光纤,特别是微结构光纤和多材料光纤,在结构和/或材料组成方面具有复杂的几何形状。尽管其制造技术正在迅速发展,但与传统光纤相比,仍处于非常早期的发展阶段。在这些光纤的多阶段制造过程的每个步骤中,对其进行结构表征对于优化拉丝工艺至关重要。这些光纤的复杂性限制了使用传统折射测量法和显微镜技术来确定其结构和材料组成。据我们所知,这里我们展示了首次使用X射线计算机断层扫描(CT)方法对特种光纤进行无损结构和材料研究,这是其他技术无法实现的。X射线CT技术的最新进展允许以亚微米分辨率检查光纤及其预制棒,同时保留样本以供后续加工和使用。在这项工作中,我们研究了一些最具挑战性的特种光纤及其预制棒。我们分析了一种空心光子带隙光纤及其预制棒,以及两根熔接空心光纤之间接头处的键合质量。此外,我们还研究了一种多元素光纤和一种掺入金属的双悬浮芯光纤。X射线CT的应用几乎可以扩展到所有类型的光纤、预制棒和器件。