Shear inducing beamsplitter for interferometric image...

Optical: systems and elements – Optical modulator – Light wave temporal modulation

Reexamination Certificate

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C356S520000

Reexamination Certificate

active

06879427

ABSTRACT:
A shearing generator comprising: an input light source; an image generator that generates two images of the input light source at an output plane, the image generator comprising a beam splitter that splits light from the input source into at least one pair of interfering light waves at an output thereof, and defines different optical paths for the light propagation of the light waves, said optical paths including at least one phase shifting element that provides for a different phase shift for the two paths.

REFERENCES:
patent: 3969699 (1976-07-01), McGlaughlin
patent: 4005385 (1977-01-01), Joynson et al.
patent: 4016413 (1977-04-01), Bramley
patent: 4124278 (1978-11-01), Grinberg et al.
patent: 4354247 (1982-10-01), Yao
patent: 4460969 (1984-07-01), Chen et al.
patent: 4575248 (1986-03-01), Horwitz et al.
patent: 4590608 (1986-05-01), Chen et al.
patent: 4597630 (1986-07-01), Brandstetter et al.
patent: 4603398 (1986-07-01), Bocker et al.
patent: 4607344 (1986-08-01), Athale et al.
patent: 4615619 (1986-10-01), Fateley
patent: 4697247 (1987-09-01), Grinberg et al.
patent: 4847796 (1989-07-01), Aleksoff et al.
patent: 4892370 (1990-01-01), Lee
patent: 4892408 (1990-01-01), Pernick et al.
patent: 4896952 (1990-01-01), Rosenbluth
patent: 4972498 (1990-11-01), Leib
patent: 4986640 (1991-01-01), Athale
patent: 5005954 (1991-04-01), Liu
patent: 5072314 (1991-12-01), Cheng
patent: 5080464 (1992-01-01), Toyoda
patent: 5099448 (1992-03-01), Myers et al.
patent: 5107351 (1992-04-01), Leib et al.
patent: 5138489 (1992-08-01), Paek
patent: 5191392 (1993-03-01), Johnson
patent: 5216529 (1993-06-01), Paek et al.
patent: 5227886 (1993-07-01), Efron et al.
patent: 5235439 (1993-08-01), Stoll
patent: 5262979 (1993-11-01), Chao
patent: 5274716 (1993-12-01), Mitsuoka et al.
patent: 5297068 (1994-03-01), Guilfoyle et al.
patent: 5321639 (1994-06-01), Krishnamoorthy et al.
patent: 5327286 (1994-07-01), Sampsell et al.
patent: 5333117 (1994-07-01), Ha et al.
patent: 5339305 (1994-08-01), Curtis et al.
patent: 5454047 (1995-09-01), Chang et al.
patent: 5537492 (1996-07-01), Nakajima et al.
patent: 5675670 (1997-10-01), Koide
patent: 5784309 (1998-07-01), Budil
patent: 5790686 (1998-08-01), Koc et al.
patent: 5822323 (1998-10-01), Kaneko et al.
patent: 6005840 (1999-12-01), Awater et al.
patent: 6008943 (1999-12-01), Metelitsa
patent: 6058121 (2000-05-01), Kim et al.
patent: 6452146 (2002-09-01), Barchers
patent: 6639683 (2003-10-01), Tumbar et al.
patent: 6683679 (2004-01-01), Belenkii
patent: 36 16 393 (1987-07-01), None
patent: 42 03 855 (1993-08-01), None
patent: 0 341 385 (1989-11-01), None
patent: 0 475 372 (1992-03-01), None
patent: 0 577 258 (1994-01-01), None
patent: 0 691 717 (1996-01-01), None
patent: 0 844 707 (1998-05-01), None
patent: 57-10123 (1982-01-01), None
patent: 5-333398 (1993-12-01), None
patent: WO 0072104 (2000-11-01), None
patent: WO 0072105 (2000-11-01), None
patent: WO 0072267 (2000-11-01), None
Akiba, A. et al.; “Fundamental Study on a Microoptic Image Preprocessor Composed of Planar Microlens Array;” Aug. 1991; Journal: Optics; vol. 20; No. 8; pp. 507-513.
Armand, A. et al.; “Real-Time Parallel Optical Analog-to-Digital Conversion;” Mar. 1980; Optics Letters; vol. 5; No. 3; pp. 129-131.
Brenner, K. H. et al.; “Implementation of an Optical Crossbar Network Based on Directional Switches;” May 10, 1992; Applied Optics; vol. 31; No. 14; pp. 2446-2451.
Cheng, L. M. et al.; “Optical Cosine Transform Using Phase Conjugation Technique;” Sep. 16-18, 1991; Proceedings of Third International Conference on Holographic Systems, Components and Applications; Organized by Electronics Division of the Institution of Electrical Engineers; pp. 113-117.
Cohn, R. W.; Link Analysis of a Deformable Mirror Device Based Optical Crossbar Switch; Jan. 1992; Optical Engineering; vol. 31; No. 1; pp. 134-140.
Eckert, W. et al.; “Compact Planar-Integrated Optical Correlator for Spatially Incoherent Signals;” Feb. 10, 2000; Applied Optics; vol. 39; No. 5; pp. 759-765.
Eckert, W. et al.; “Design and Fabrication of a Compact Planar-Integrated Optical Correlator;” Nov. 10-13, 1997; Conference Proceedings of the IEEE Lasers and Electro-Optics Society's 10thAnnual Meeting; LEOS '97; vol. 1; pp. 134-135.
Farr, K. B. et al.; “Lens Design for a White-Light Cosine-Transform Achromat;” Jan. 1, 1995; Applied Optics; vol. 34; No. 1; pp. 128-137.
Feitelson, D.; “Optical Computing;” Chapter “Optical Image and Signal Processing;” MIT Press 1988; pp. 102-104 and 117-129.
Fukui, M. et al.; “High-Throughput Optical Image Crossbar Switch that Uses a Point Light Source Array;” Mar. 1, 1993; Optics Letters; vol. 18; No. 5; pp. 376-378.
Fukui, M.; “Optoelectronic Parallel Computing System with Optical Image Crossbar Switch;” Nov. 10, 1993; Applied Optics; vol. 32; No. 32; pp. 6475-6481.
George, N. et al.; “Cosinusoidal Transforms in White Light;” Mar. 15, 1984; Applied Optics; vol. 23; No. 6; pp. 787-797.
Glaser, I.; “Noncoherent Parallel Optical Processor for Discrete Two-Dimensional Linear Transformations;” Oct. 1980; Optics Letters; vol. 5; No. 10; pp. 449-451.
Gonzalez, R. C. et al.; “Digital Image Processing;” 1992; Addison Wesley Publishing Company; pp. 84-119, 142-145 and 374-381; ISBN 0-201-50803-6.
Goodman, J. W.; “Analog Optical Information Processing;” Introduction to Fourier Optics; Chapter 8; Mc Graw Hill-Hill Companies; Second Edition; Copyright 1996; pp. 217-224.
Goodman, J. W. et al.; “Fully Parallel, High-Speed Incoherent Optical Method for Performing Discrete Fourier Transforms;” Jan. 1978; Optics Letters; vol. 2; No. 1; pp. 1-3.
Gourlay, J. et al.; “Hadamard Transform Image Processing and Its Optical Implementation with Ferroelectric Liquid Crystal Spatial Light Modulators;” Jan./Feb. 1995; International Journal of Optoelectronics (Incl. Optical Computing & Processing); GB; Taylor & Francis; London; vol. 10; No. 1; pp. 51-58; XP000582638.
Goutin, P. et al.; “Some New Result in Hybrid Acousto-Optic Processing;” Oct. 1992; Proceedings of the IEEE Ultrasonics Symposium; vol. 1; pp. 493-496.
Hamanaka, K. et al.; “Multiple Imaging and Multiple Fourier Transformation Using Planar Microlens Arrays;” Oct. 1, 1990; Applied Optics; vol. 29; No. 28; pp. 4064-4070.
Hamanaka, K. et al.; “Parallel Processing Using Microlens Arrays;” Tsukuba Research Laboratory; Nippon sheet Glass Co. Ltd.; pp. 59-64.
Hariharan, P.; “Shearing Interferometers;” Year 1985; Chapter 8: “Optical Wavefronts;” Optical Interferometry; pp. 134-138.
Hariharan, P.; “Shearing Interferometers;” Year 1992; Chapter 9: “Optical Testing;” Basics of Interferometry; pp. 86, 87, 90, 99, 194 and 195.
Harmuth, H. F.; “Sequency Theory—Foundations and Applications;” 1977; Academic Press; pp. 1-121.
Huang, H. X. et al.; “Fast Parallel Complex Discrete Fourier Transforms Using a Multichannel Optical Correlator;” Nov. 15, 1998; Optics Communications; vol. 68; No. 6; pp. 408-411; Amsterdam; The Netherlands; XP000006236.
Ikuro, K. et al.; JP 02-127625; May 16, 1990 & Patent Abstracts of Japan; Jul. 30, 1990; vol. 14; No. 352 (P-1085).
Inbar, H. et al.; “Modified Joint Transform Correlator Binarized by Error Diffusion Spatially Variant Range Limit;” Jul. 10, 1994; Applied Optics; Optical Society of America; Washington; vol. 33; No. 20; pp. 4444-4451; XP000455183.
Juvells, I. et al.; “Optical Pattern Recognition in Motion Acquired Scenes Using a Binary Joint Transform Correlation;” Feb. 1997; Journal of Modern Optics; vol. 44; No. 2; pp. 313-325; XP000912224.
Kirk, A. G. et al.; “Experimental Implementation of an Optoelectronic Matrix-Matrix Multiplier which Incorporates Holographic Multiple Imaging;” Dec. 1992; Optical Computing and Processing;

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