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Dual-Reference Design for Holographic Coherent Diffraction Imaging

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arxiv 1902.02492 v2 pith:O55DD76X submitted 2019-02-07 eess.IV cs.LGcs.NAmath.NAmath.OCphysics.optics

classification eess.IVcs.LGcs.NAmath.NAmath.OCphysics.optics
keywords holographicimagingrecoverycoherentdatadesigndiffractiondual-reference
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A new reference design is introduced for holographic coherent diffraction imaging. This consists in two references - "block" and "pinhole" shaped regions - placed adjacent to the imaging specimen. An efficient recovery algorithm is provided for the resulting holographic phase retrieval problem, which is based on solving a structured, overdetermined linear system. Analysis of the expected recovery error on noisy data, which is contaminated by Poisson shot noise, shows that this simple modification synergizes the individual references and hence leads to uniformly superior performance over single-reference schemes. Numerical experiments on simulated data confirm the theoretical prediction, and the proposed dual-reference scheme achieves a smaller recovery error than leading single-reference schemes.

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