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Quantitative phase and refractive index analysis of optical fibers using differential interference contrast microscopy

机译:差分干涉对比显微镜对光纤的定量相和折射率分析

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摘要

A systematic and straightforward image processing method to extract quantitative phase and refractive index data from weak phase objects is presented, obtained using differential interference contrast (DIC) microscopy. The method is demonstrated on DIC images of optical fibers where a directional integration routine is applied to the DIC images to extract phase and refractive index information using the data obtained across the whole DIC image. By applying the inverse Abel transform to the resultant phase images, an accurate refractive index profile is obtained. The method presented here is compared to the refracted near-field technique, typically used to obtain the refractive index profile of optical fibers, and shows excellent agreement. It is concluded that through careful image processing procedures, DIC microscopy can be successfully implemented to obtain quantitative phase and refractive index information of optical fibers.
机译:提出了一种利用微分干涉对比(DIC)显微镜从弱相物体中提取定量相和折射率数据的系统,直接的图像处理方法。在光纤的DIC图像上演示了该方法,其中将方向积分例程应用于DIC图像,以使用在整个DIC图像上获得的数据提取相位和折射率信息。通过对最终的相位图像应用反Abel变换,可以获得准确的折射率分布。将此处介绍的方法与通常用于获得光纤折射率分布的折射近场技术进行了比较,并显示出极好的一致性。结论是,通过仔细的图像处理程序,可以成功地实施DIC显微镜以获得光纤的定量相和折射率信息。

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