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US Patent 8634126 Digital binary MEMS wavefront control

Patent 8634126 was granted and assigned to University of Rochester on January, 2014 by the United States Patent and Trademark Office.

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Patent
Patent
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Patent attributes

Patent Applicant
University of Rochester
University of Rochester
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Current Assignee
University of Rochester
University of Rochester
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
86341260
Patent Inventor Names
Nicholas George0
Kedar Khare0
Date of Patent
January 21, 2014
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Patent Application Number
136629280
Date Filed
October 29, 2012
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Patent Primary Examiner
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James Jones
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Patent abstract

Embodiments of the invention are directed to a new type of phase screen, i.e., an opto-electronic device that can convert a distorted incoming optical wavefront into a plane wave or, conversely, transform a plane wave into a prescribed varying output wavefront. The basic concept involves novel binary all-digital MEMS interferometer configurations that can be used to create controlled and arbitrary optical wavefront using only 0,1 amplitude changes followed by differential propagation distances to convert these amplitude variations into controllable and/or continuous phase variations. Clustered pixel notions, such as Floyd-Steinberg, Stucki or other algorithms useful in digital half-tone printing, are simultaneously employed to create controllable grey-level variations as well as continuous phase variations. Desired grey-levels can be obtained wherein each pixel is formed by, e.g., a 3×3 or 5×5 cluster of mirrors. Both the filling-in of the outputs of the binary mirror (0,1) and the grey-levels are accomplished simply by spatial averaging over a short propagation distance.

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