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Microinterferometric optical phase tomography for measuring small, asymmetric refractive-index differences in the profiles of optical fibers and fiber devices

机译:微干涉光学相层析成像技术,用于测量光纤和光纤设备轮廓中小的,不对称的折射率差异

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摘要

A new technique, microinterferometric optical phase tomography, is introduced for use in measuring small, asymmetric refractive-index differences in the profiles of optical fibers and fiber devices. The method combines microscopy-based fringe-field interferometry with parallel projection-based computed tomography to characterize fiber index profiles. The theory relating interference measurements to the projection set required for tomographic reconstruction is given, and discrete numerical simulations are presented for three test index profiles that establish the technique's ability to characterize fiber with small, asymmetric index differences. An experimental measurement configuration and specific interferometry and tomography practices employed in the technique are discussed. (C) 2005 Optical Society of America.
机译:引入了一种新技术,即微干涉光学相层析成像技术,该技术可用于测量光纤和光纤设备轮廓中小的,不对称的折射率差异。该方法将基于显微镜的边缘场干涉测量与基于平行投影的计算机断层扫描相结合,以表征纤维折射率分布。给出了将干涉测量与断层图像重建所需的投影集相关的理论,并针对三个测试指标曲线进行了离散数值模拟,从而建立了该技术表征具有小的不对称指标差异的光纤的能力。讨论了该技术中采用的实验性测量配置以及特定的干涉测量和断层摄影方法。 (C)2005年美国眼镜学会。

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