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Reconstruction of refractive indices distribution in 3D using a single pattern of multiple-beam interference fringes for online investigation of necking phenomenon

机译:使用多光束干涉条纹的单个图案重建3D折射率分布以在线研究颈缩现象

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摘要

A proposed model for reconstructing the refractive indices distribution in three dimensions is introduced. The reconstruction process requires a single multiple-beam interference pattern which facilitates online investigation of structural changes. In order to increase the accuracy of the measured refractive indices, fringe analysis was applied on the basis of the inverse interferogram principle proposed in this article. Verification of the modified technique was made using reconstructed noise-free interference patterns. The modified technique is helpful in studying the necking phenomenon observed during creep extension of polypropylene fibres. Refractive index distribution in 3D across the fibre was determined and the birefringence profile was calculated. Microinterferograms are given for illustration.
机译:介绍了一种用于重构三维折射率分布的模型。重建过程需要单个多光束干涉图样,这有助于在线研究结构变化。为了提高折射率的测量精度,在本文提出的反干涉图原理的基础上,进行了条纹分析。使用重构的无噪声干扰模式对改进技术进行了验证。改进的技术有助于研究聚丙烯纤维蠕变延伸过程中观察到的缩颈现象。确定了光纤中3D的折射率分布,并计算了双折射曲线。给出微干涉图用于说明。

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