激光加工微结构光纤预制体

M. Becker, M. Werner, O. Fitzau, D. Esser, J. Kobelke, K. Schuster, A. Lorenz, A. Schwuchow, M. Rothhardt, D. Hoffmann, H. Bartelt
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引用次数: 1

摘要

提出了一种适合于微结构光纤固体玻璃预制体结构的激光打孔技术。该技术允许通过堆叠和绘制技术无法轻松解决的光纤设计。作为一个例子,我们提出了一个四环六边形孔结构钻在硅棒超过80毫米的长度在ILT。从该预制体中提取的光纤在ipt上用于吸收测量和光纤布拉格光栅刻字实验。几何方面,比较了那些具有相似结构的MOF的堆叠和绘制技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Laser processed preforms for microstructured optical fibers
We present a laser drilling technology eminently suitable for structuring of solid glass preforms for microstructured optical fibers (MOF). This technology allows fiber designs that can not be easily adressed by stack and draw technology. As an example, we present a four ring hexagonal hole structure drilled in a silica rod over a length of 80 mm at ILT. The fiber drawn from this preform was used for absorption measurements and fiber Bragg grating inscription experiments at IPHT. Geometrical aspects are compared to those of a MOF with a similar structure made by the stack and draw technology.
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