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Aperture effect correction in spectroscopic full-field optical coherence tomography

机译:光谱全场光学相干断层扫描中的孔径效应校正

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摘要

Spatially resolved spectroscopic optical coherence tomography (OCT) has been demonstrated to be a convenient tool for spectral analysis in turbid media. For a full-field OCT configuration using a Mirau objective in the visible range, we found that the effective numerical aperture varies over the field of view, leading to field-dependent spectral shifts in the reconstructed spectra. Interferograms recorded with quasi-monochromatic lights are theoretically fitted with a general Mirau interference formula, and we propose a numerical correction method for white-light spectroscopy. The method is then tested successfully for the measure of the reflectivity of a plane gold sample.
机译:空间分辨光谱光学相干断层扫描(OCT)已被证明是一种在浊介质中进行光谱分析的便捷工具。对于在可见光范围内使用Mirau物镜的全场OCT配置,我们发现有效数值孔径随视场变化,从而导致重构光谱中与场有关的光谱偏移。理论上,用准单色光记录的干涉图符合一般的Mirau干涉公式,因此我们提出了一种用于白光光谱的数值校正方法。然后成功地测试了该方法,以测量平面金样品的反射率。

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