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US Patent 10197715 Methods of diffractive lens and mirror fabrication

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Contents

Is a
Patent
Patent
0

Patent attributes

Patent Applicant
Beam Engineering For Advanced Measurements Co.
Beam Engineering For Advanced Measurements Co.
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
101977150
Patent Inventor Names
David E. Roberts0
Nelson V. Tabirian0
Svetlana V. Serak0
Brian R. Kimball0
Diane M. Steeves0
Date of Patent
February 5, 2019
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Patent Application Number
151980260
Date Filed
June 30, 2016
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Patent Citations
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US Patent 10120112 Diffractive waveplate lenses for correcting aberrations and polarization-independent functionality
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US Patent 10114239 Waveplate lenses and methods for their fabrication
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US Patent 10031424 Fabrication of high efficiency, high quality, large area diffractive waveplates and arrays
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US Patent 10036886 Broadband optics for manipulating light beams and images
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US Patent 10075625 Method for camera detection and jamming
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US Patent 10107945 Vector vortex waveplates
Patent Citations Received
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US Patent 11982906 Polarization-independent diffractive optical structures
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US Patent 10557977 Diffractive waveplate lenses and applications
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US Patent 11543704 Polymer networks stabilizing liquid crystal diffractive waveplates
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US Patent 10712485 Composite optical coating on a curved optical surface
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US Patent 10802302 Waveplate lenses and methods for their fabrication
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US Patent 10996466 Waveplates on a curved surface and fabrication method thereof
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US Patent 11294240 Diffractive waveplate devices that operate over a wide temperature range
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US Patent 11366254 High-efficiency wide-angle beam steering system
...
Patent Primary Examiner
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Elizabeth A Burkhart
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Patent abstract

Methods of fabricating optical lenses and mirrors, systems and composite structures based on diffractive waveplates, and fields of application of said lenses and mirrors that include imaging systems, astronomy, displays, polarizers, optical communication and other areas of laser and photonics technology. Diffractive lenses and mirrors of shorter focal length and larger size, with more closely spaced grating lines, and with more exacting tolerances on the optical characteristics, can be fabricated than could be fabricated by previous methods.

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