ELECTRO-OPTICS  LABORATORY

Department of Electrical and Computer Engineering

Interferenceless and motionless method for recording digital holograms of coherently illuminated 3D objects by coded aperture correlation holography system

Nathaniel Hai, Joseph Rosen

Optical recording of digital holograms by coherent light traditionally involves interference between object and reference waves, which complicates the image acquisition process and decreases the power efficiency. In this work, we take the coded aperture correlation holography technique one step forward to record coherent digital holograms of three-dimensional scenes, without wave interference and in a motionless working mode. In addition to the explicit benefits of integrating interferenceless holographic imaging system with coherent illumination, the suggested method enables fast image acquisition implied by its inherent high signal-to-noise ratio. Experimental validation for diffusely reflective objects is also provided, making this relatively simple system appropriate for studying and using the speckle phenomena in coherent digital holography.

Publication language English
Pages 24324-24339
Journal Optics Express
Volume 27
Issue number 17
Publication status Published - 19.08.2019

ASJC Scopus subject areas

Atomic and Molecular Physics, and Optics
Access to Document
10.1364/oe.27.024324
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Link to publication in Scopus