Page 740 - Introduction to Information Optics
P. 740

724                             Index

       Hybrid optical architectures, for pattern  bus structure, 343-348
            recognition, 357-362             MSM photodetectors, 331-334, 348
       Hybrid-optical JTC, 380               optical clock signal distribution, 337-343
       Hybrid optical neural network, 142-143  polymer waveguides, 302-312, 343
       Hybrid optical processing, 88-89      thin-film waveguide couplers, 312-331
       Hybrid-optical VLC, 359               vertical cavity surface-emitting lasers
                                                (VCSELs), 302, 312,-334-339, 346.
                      I                         348, 486
       Image processing                    Interconnection weight matrix (IWM), 142,
         broadband signal processing, 98-103    412,417
         color image preservation, 138-140  Interferometer
         correlation detection, 89-82        fiber-optic sensors based on, 583 587
         debarring, 93, 135-137              interleaver based on, 684-685
         image reconstruction, 283         Interferometric switches, nonlinear. See
         image restoration, 93-97               Nonlinear interferometric switches
         image subtraction, 98, 137        Interpattern association (IPA) neural
         pseudocoloring, 140                    network, 144-147
       Incoherent light, 74, 75            Intrinsic distributed fiber-optic sensors, 589-
         signal processing with                 600
          color image preservation, 138-140  Inverse filter, 93
          exploitation of coherence, 131-135  Inverse Hankel transform, 281
          pseudocoloring, 140-141          Inverse Radon transform, 283
          white light, 135-138             Inverse Wigner distribution function, 271
       Indium phosphite, photorefractive effect, 118  IPA neural network. See Interpattern
       Infinite summation of partial waves, 314  association neural network
       Information cells, 25-26            Iron-doped lithium niobate, 117, 460
       Information display                 Irregularity, fiber-optic networks, 193
         3-D holographic display, 617-618, 632  Iterative joint transform detectors (JTDs),
          optical scanning holography (OSH),    372-375
            638-639                        IWM. See Interconnection weight matrix
          principles, 632-637
          synthetic aperture holography, 640-642
         using acousto-optic spatial light  Jitter, 198
            modulators, 618-632            Johnson noise, 191
         using electro-optic spatial light modulators,  Joint transform correlators (JTCs), 86, 91 92,
            643-662                             355, 356-357
       Information loss, communication      conventional JTC, 370-372
            channels, 8                      four-wave mixing JTC, 402
       Information transmission, 2-3         hybrid JTC, 358, 359, 372-373
         band-limited analysis, 23-26       hybrid-optical JTC, 380
         communication channels, 3, 9-17     JTC-NNC, 399-401
         recognition process, 2              optical-disk-based JTC optical disk, 361
         Shannon's theory, 3-4               quasi-Fourier-transform JTC (QFJTC),
         signal analysis, 26-41, 256            364 366
         trading information with entropy, 41-47  robustness of, 362-364
       InkJet, lor optical switching, 693  Joint transform detectors (JTDs)
       Insertion loss, 193-194              iterative, 372-375
       Intensity-based fiber-optic sensors, 573-575  nonconventional, 364-367
       Intensity modulation, of laser, 625-628  nonzero-order, 368-370, 398
       Interconnection, 293-302              phase representation, 371-372
       bottlenecks, 476                     position-encoding, 370-371
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