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Advanced Imaging Optics Utilizing Wavefront Coding.
Author(s) -
David Scrymgeour,
Kathleen Adelsberger,
Robert R. Boye
Publication year - 2015
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Reports
DOI - 10.2172/1184361
Subject(s) - wavefront , optics , computer science , focus (optics) , image quality , depth of field , chromatic aberration , adaptive optics , coding (social sciences) , computer vision , image processing , phase noise , chromatic scale , artificial intelligence , physics , mathematics , image (mathematics) , statistics
Image processing offers a potential to simplify an optical system by shifting some of the imaging burden from lenses to the more cost effective electronics. Wavefront coding using a cubic phase plate combined with image processing can extend the system's depth of focus, reducing many of the focus-related aberrations as well as material related chromatic aberrations. However, the optimal design process and physical limitations of wavefront coding systems with respect to first-order optical parameters and noise are not well documented. We examined image quality of simulated and experimental wavefront coded images before and after reconstruction in the presence of noise. Challenges in the implementation of cubic phase in an optical system are discussed. In particular, we found that limitations must be placed on system noise, aperture, field of view and bandwidth to develop a robust wavefront coded system.

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