Holographic representation of space-variant systems: system theory. 1976

R J Marks Ii, and T F Krile

System theory for holographic representation of linear space-variant systems is derived. The utility of the resulting piecewise isoplanatic approximation (PIA) is illustrated by example application to the invariant system, ideal magnifier, and Fourier transformer. A method previously employed to holographically represent a space-variant system, the discrete approximation, is shown to be a special case of the PIA.

UI MeSH Term Description Entries

Related Publications

R J Marks Ii, and T F Krile
April 1973, American journal of optometry and archives of American Academy of Optometry,
R J Marks Ii, and T F Krile
June 1991, Applied optics,
R J Marks Ii, and T F Krile
December 2017, Applied optics,
R J Marks Ii, and T F Krile
June 1996, Optics letters,
R J Marks Ii, and T F Krile
July 1990, Physical review. D, Particles and fields,
R J Marks Ii, and T F Krile
August 2013, Journal of vision,
R J Marks Ii, and T F Krile
January 2022, Noro psikiyatri arsivi,
R J Marks Ii, and T F Krile
January 2015, Computational intelligence and neuroscience,
Copied contents to your clipboard!