參考文獻 |
1.H. Coufal, and G. W. Burr, “Optical data storage,” Chapter 26, International Trends in Applied Optics, ed. A. Guenther, SPIE (2002).
2.J. W. Goodman, Introduction to Fourier Optics, 3rd ed. (McGraw-Hill, New York, 2002).
3.D. Gabor, “A new microscopic principle,” Nature 161, 777-778 (1948).
4.P. J. van Heerden, “Theory of Optical Information Storage in Solids,” Appl. Opt. 2, 393-400 (1963).
5.E. N. Leith, A. Kozma, J. Upatnieks, J. Marks, and N. Massey, “Holographic Data Storage in Three-Dimensional Media,” Appl. Opt. 5, 1303-1311 (1966).
6.C. C. Sun and W. C. Su, “Three-dimensional shifting selectivity of random phase encoding in volume holograms,” Appl. Opt. 40, 1253-1260 (2001).
7.H. J. Coufal, D. Psaltis, and G. T. Sincerbox, Holographic data storage, 1st ed. (Springer-Verlag, New York, 2000).
8.J. Ashley, M. P. Bernal, G. W. Burr, H. Coufal, H. Guenther, J. A. Hoffnagle, C.M. Jefferson, B. Marcus, R. M. Macfarlane, R. M. Shelby, and G. T. Sincerbox, “Holographic data storage,” IBM journal of research and development 44, 341 (2000).
9.D. Psaltis and F. Mok, “Holographic memories,” Scientific American 273, 70 (1995).
10.F. H. Mok, G. W. Burr, and D. Psaltis, “System metric for holographic memory systems,” Opt. Lett. 21, 896-898 (1996).
11.K. Curtis, A. Pu, and D. Psaltis, “Method for holographic storage using peristrophic multiplexing,” Opt. Lett. 19, 993-994 (1994).
12.K. Anderson and K. Curtis, “Polytopic multiplexing,” Opt. Lett. 29, 1402-1404 (2004).
13.H. Horimai, X. Tan, and J. Li, “Collinear Holography,” Appl. Opt. 44, 2575-2579 (2005).
14.H. Horimai and X. Tan, “Collinear technology for a holographic versatile disk,” Appl. Opt. 45, 910-914 (2006).
15.B. K. Anderson, E. Fotheringham, A. Hill, B. Sissom, and K. Curtis, “High speed holographic data storage at 500 Gbit/in.2,” SMPTE motion imaging journal 115, 200-203 (2006).
16.K. Tanaka, H. Mori, M. Hara, K. Hirooka, A. Fukumoto, and K. Watanabe, “High density recording of 270 Gbits/inch2 in a coaxial holographic storage system,” Tech. Digest of ISOM 2007, MO–D–03 (2007).
17.B. Fischer, M. C. Golomb, J. O. White, and A. Yariv, “Amplified reflection, transmission, and self-oscillation in real-time holography,” Opt. Lett. 6, 519-521 (1981).
18.J. J. P. Drolet, E. Chuang, G. Barbastathis, and D. Psaltis, “Compact, integrated dynamic holographic memory with refreshed holograms,” Opt. Lett. 22, 552-554 (1997).
19.F. Dubois, F. D. Schryver, and B. Biran, “Theoretical study of size effects in volume holograms,” J. Opt. Soc. Am. A 8, 270-273 (1991).
20.F. H. Mok, M. C. Tackitt, and H. M. Stoll, “Storage of 500 high-resolution holograms in a LiNbO3 crystal,” Opt. Lett. 16, 605-607 (1991).
21.D. Psaltis, M. Levene, A. Pu, G. Barbastathis, and K. Curtis, “Holographic storage using shift multiplexing," Opt. Lett. 20, 782-784 (1995).
22.G. A. Rakuljic, V. Leyva, and A. Yariv, “Optical data storage by using orthogonal wavelength-multiplexed volume holograms,” Opt. Lett. 17, 1471-1473 (1992).
23.C. C. Sun, W. C. Su, B. Wang, and Y. Ouyang, “Diffraction selectivity of holograms with random phase encoding,” Opt. Commun. 175, 67-74 (2000).
24.J. T. LaMacchia and D. L. White, “Coded multiple exposure holograms,” Appl. Opt. 7, 91-94 (1968).
25.J. F. Heanue, M. C. Bashaw, and L. Hesselink, “Encrypted holographic data storage based on orthogonal-phase-code multiplexing,” Appl. Opt. 34, 6012-6015 (1995).
26.C. C. Sun, R. H. Tsou, W. Chang, M. W. Chang and J. Y. Chang, “Random phase-coded multiplexing in LiNbO3 for volume hologram storage by using a ground-glass,” Opt. Quantum Electron. 28, 1551-1561 (1996).
27.C. C. Sun, “A simplified model for diffraction analysis of volume holograms,” Opt. Eng. 42, 1184-1185 (2003).
28.陳政憲, 無畫素串因之體積全像光儲存碟片之研究, 國立中央大學光電所碩士論文, 中華民國九十四年。
29.許哲誌, 離軸式體積全像儲存系統架構之研究, 國立中央大學光電所碩士論文, 中華民國九十六年。
30.吳柏融, 離軸全像光學儲存之誤碼率的研究與模擬, 國立中央大學光電所碩士論文, 中華民國九十七年。
31.蘇威佳, 三維亂相編碼之體積全像及其應用, 國立中央大學光電所博士論文, 中華民國九十年。
32.Y. H. Lee and S. D. Sohn, “Optical implementation of orthogonal phase-code multiplexing,"Opt. Lett. 26, 1990-1992 (2001).
|