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We present a digital holographic microscope wherein the sample is illuminated by structured light to enable the capture of additional object spatial frequencies.Reconstructed images with increased spatial resolution are obtained by separating and synthesizing bandwidths of different frequency regions in the Fourier domain.The theoretical analysis and experimental results are presented.
We present a digital holographic microscope where the sample is illuminated by structured light to enable the capture of additional object spatial frequencies. Reconstructed images with increased spatial resolution are obtained by separating and synthesizing bandwidths of different frequency regions in the Fourier domain. The theoretical analysis and experimental results are presented.