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Quantitative phase and refractive index imaging of 3D objects via optical transfer function reshaping
Published 21 Jan 2022 in physics.optics and eess.IV | (2201.08594v1)
Abstract: Deconvolution phase microscopy enables high-contrast visualization of transparent samples through reconstructions of their transmitted phases or refractive indexes. Herein, we propose a method to extend 2D deconvolution phase microscopy to thick 3D samples. The refractive index distribution of a sample can be obtained at a specific axial plane by measuring only four intensity images obtained under optimized illumination patterns. Also, the optical phase delay of a sample can be measured using different illumination patterns.
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