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利用定量相成像分析电弧熔接过程中光纤的变化。

Analysis of changes in optical fibers during arc-fusion splicing by use of quantitative phase imaging.

作者信息

Dragomir N M, Ampen-Lassen E, Baxter G W, Pace P, Huntington S T, Farrell P M, Stevenson A J, Roberts A

机构信息

School of Physics, The University of Melbourne, Victoria 3010, Australia.

出版信息

Microsc Res Tech. 2006 Nov;69(11):847-51. doi: 10.1002/jemt.20357.

Abstract

A non-interferometric imaging technique in conjunction with Abel inversion is used to directly and quantitatively examine the changes in optical fibers due to the heating produced during arc-fusion splicing as a function of fusion arc parameters. Phase images in the vicinity of a fusion splice are obtained using Quantitative Phase Microscopy, allowing the refractive-index change to be reconstructed with high spatial resolution. This simple, nondestructive method confirms that, for a fixed arc current, while the fusion time increases, the refractive-index of both fiber cores within the fusion region decreases in magnitude, the core region broadens, and the axial gradient decreases.

摘要

一种结合阿贝尔反演的非干涉成像技术被用于直接且定量地研究电弧熔接过程中因加热而导致的光纤变化,该变化是熔接电弧参数的函数。使用定量相显微镜获取熔接处附近的相位图像,从而能够以高空间分辨率重建折射率变化。这种简单的非破坏性方法证实,对于固定的电弧电流,随着熔接时间增加,熔接区域内两个光纤芯的折射率大小减小,芯区域变宽,且轴向梯度减小。

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