Page 482 - Introduction to Information Optics
P. 482
References 46 /
8.41 L. K. Anderson, 1968, "Holographic Optical Memory for Bulk Data Storage," Bell Lab. Rec.
46, 319-325.
8.42 K. lizuka. Engineering Optics, Springer-Verlag, New York, 1985.
8.43 C. B. Burckhardt, 1970, "Use of a Random-Phase Mask for the Recording of Fourier
Transform Holograms of Data Masks," Appl. Opt. 9, 695 700.
8.44 L, Domash, Y.-M. Chen, M. Snowbell, and C. Gozewski, 1994, "Switchable Holograms and
Approaches to Storage Multiplexing," in Photonics for Processors, Neural Networks, and
Memories II, J. L. Horner, B. Javidi, S. T. Kowel, Eds., Proc. SPIE 2297, 415-424.
8.45 J. A. Rajchman, 1970, "Promise of Optical Memories," ./. Appl. Phys. 41, 1376-1383.
8.46 H. Kiemle, 1974, "Considerations on Holographic Memories in the Gigabyte Region." Appl.
Opt. 13, 803-807.
8.47 K. Kubota, Y. Ono, M. Kondo, S. Sugama, N. Nishida, and M. Sakaguchi, 1980, "Holo-
graphic Disk with High Data Transfer Rate: Its Application to an Audio Response Memory."
Appl. Opt. 19,944-951.
8.48 A. L. Mikaelian, E. H. Gulanyan, B. S. Kretlov, V. A. Semichev, and L. V. Molchanova. 1992,
"Superposition of 1-D Holograms in Disk Memory System," Opt. Mem. Neur. Netw. 1, 7 14.
8.49 J. B. Thaxter and M. Kestigian, "Unique Properties of SBN and Their Use in a Layered
Optical Memory," Appl. Opt. .13, 913 924.
8.50 T, Todorov, L. Nikolova, and N. Tomova, 1984, "Polarization Holography. 1: A New
High-Efficiency Organic Material with Reversible Photoinduced Birefringence," Appl. Opt. 23.
4309-4312.
8.51 A. G. Chen and D. J. Brady, 1994, "Electrically Controlled Multiple Hologram Storage," Opi.
Mem. New: Netw. 3, 129-133.
8.52 Y. N. Denisyuk, "Photographic Reconstruction of the Optical Properties of an Object in its
Own Scattered Radiation Field," Sot;. Phys. Dokl 7. 543-545.
8.53 E. N. Leith, A. Kozma, J. Upatnieks, J. Marks, and N. Massey, "Holographic Data Storage
in Three-Dimensional Media," Appl. Opt. 5, 1303-1311.
8.54 L. d'Auria, J. P. Huignard, C. Slezak, and E. Spitz, "Experimental Holographic Read Write
Memory Using 3-D Storage," Appl. Opt. 13, 808-818.
8.55 L. Hesselink and J. Wilde, 1991, "Recent Advances in Holographic Data Storage in SBN," in
Soviet-Chinese Joint Seminar, Proc. SPIE 1731, 74-79.
8.56 F. T. S. Yu and S. Yin, "Storage Dynamics of Photorefractive, (PR) Fiber Holograms," in
Optical Storage and Retrieval, F. T. S. Yu and S. Jutamulia, Eds., Marcel Dekker. New York.
1996, Chapter 3.
57 F. H. Mok, M. C. Tackitt, and H. M. Stoll, 1991, "Storage of 500 High-Resolution Holograms
in a LiNbOj Crystal," Opt. Lett. 16, 605 607.
8.58 F. H. Mok, 1993, "Angle-Multiplexed Storage of 5000 Holograms in Lithium Niobate." Opt.
Lett. 18, 915 917.
8.59 X. Yang and S. Jutamulia, 1999, "Three-Dimensional Photorefractive Memory Based on
Phase-Code and Rotation Multiplexing," Proc. IEEE, 87, 1941-1955.
8.60. E. H. Synge, 1928, "A Suggested Method for Extending Microscopic Resolution into
Ultramicroscopic Region," Phil. Mag. 6, 356 362.
8.61. D. W. Pohl, W. Denk, M. Lanz, 1984, "Optical Stethoscopy: Image Recording with
Resolution A/20," Appl. Phys. Lett. 44, 651-653.
8.62. A. Lewis, M. Issacson, A. Harootunian, and A. Murray, 1984, "Development of a 500 A
Spatial-Resolution Light Microscopy. I. Light Is Efficiently Transmitted Through / 16
Diameter Aperture," Ultramicroscopy, 13, 227-232.
8.63. M. H. Kryder, 1995, "Near-field Optical Recording: An Approach to 100 Gbit/irr Record-
ing," Optoelectronics Devices and Technologies, 10, 297 302.
8.64 E. Betzig, J. K. Trautman, R. Wolfe, E. M. Gyorgy, P. L. Finn, M. H. Kryder, and C.-H. Chang,
1992, "•Near-Field Magneto-optics and High-Density Data Storage," Appl. Phys. Lett. 61, 142 144.

