參考文獻 |
1. D. Gabor, “A new microscopic principle,” Nature 161, 777-778 (1948).
2. E. N. Leith and J. Upatnieks, “Reconstructed wavefronts and communication theory,” J. Opt. Soc. Amer. 52, 1123-1130 (1962).
3. E. N. Leith and J. Upatnieks, “Wavefront reconstruction with continuous-tone objects,” J. Opt. Soc. Amer. 53, 1377-1381 (1963).
4. E. N. Leith and J. Upatnieks, “Wavefront reconstruction with diffused illumination and three-dimensional objects,” J. Opt. Soc. Amer. 54, 1295-1301 (1964).
5. S. A. Benton, “Hologram reconstructions with extended light sources,” J. Opt. Soc. Amer. 59,1545-1546(1969).
6. J. T. McCrickerd and N. George, “Holographic Stereogram from Sequential Component Photographs,” Appl. Phys. Lett. 12, 10-12 (1968).
7. D. J. De Bitetto, “Bandwidth reduction of hologram transmission system by elimination of vertical parallax,” Appl. Phys. Lett. 12, 176-178 (1968).
8. R. D. Bahuguna and F. Mendoza-Santoyo, "Simple rainbow-holographic techniques for two-dimensional transparencies," Opt. Lett. 9, 381-383 (1984).
9. E. N. Leith and H. Chen, "Deep-image rainbow holograms," Opt. Lett. 2, 82-84 (1978).
10. R. V. Pole, “3-D imagery and holograms of objects illuminated in white light,” Appl. Phys. Lett. 10, 20-22 (1967).
11. M. Yamaguchi, H. Endoh, T. Honda, and N. Ohyama, “High-quality recording of a full-parallax holographic stereograms with a digital diffuser,” Opt. Lett. 19, 135-137 (1994).
12. M. Yamaguchi, N. Ohyama, and T. Honda, “Holographic three-dimensional printer: new method,” Appl. Opt. 31, 217-222 (1992).
13. M. Yamaguhi, H. Sugiura, T. Honda, and N. Ohyama, "Automatic recording method for holographic three-dimensional animation," J. Opt. Soc. Am. A 9, 1200-1205 (1992).
14. D. J. DeBitetto, “Holographic panoramic stereograms synthesized from white light recordings,” Appl. Opt. 8, 1740-1741 (1969).
15. D. J. DeBitetto, “Transmission bandwidth reduction of holographic stereograms recorded in white light,” Appl. Phys. Lett. 12, 343-344 (1968).
16. L. Huff and R. L. Fusek, “Color holographic stereograms,” Opt. Eng. 19, 691–695 (1980).
17. E. N. Leith and P. Voulgaris, “Multiplex holography: some new methods,” Opt. Eng. 24, 171–175 (1985).
18. G. Saxby, Practical Holography, 2nd ed., (Prentice-Hall, Englewood Cliffs, N.J., 1994) , p. 308-311.
19. S. A. Benton, “Alcove holograms for computer-aided design,” in True Three-Dimensional Imaging Techniques and Display Technologies, D. F. McAllister and W. E. Robbins (eds.), Proc. SPIE 761, 53–61 (1987).
20. N. D. Haig, “Three-dimensional holograms by rotational multiplexing of two-dimensional films,” Appl. Opt. 12, 419-420 (1973).
21. J. Upatnieks, “Edge-illuminated holograms,” Appl. Opt. 31, 1048-1052 (1992).
22. N. Ohyama, Y. Minami, A. Watanabe, J. Tsujiuchi and T. Honda, “Multiplex holograms of a skull made of CT images,” Opt. Commun. 61, 96–99 (1987).
23. T. T. Chia, A. C. Goh and Y. K. Lai, “Computer-generated holograms with a commercial microfilm,” Opt. Commun. 19, 263–264 (1987).
24. K. Nagashima and T. Asakura, “Computer-generated line holograms using an xy plotter,” Opt. Commun. 15, 133–137 (1983).
25. M. C. King, A. M. Noll, and D. H. Berry, “A new approach to computer-generated holography,” Appl. Opt. 9, 471-475 (1970).
26. A. W. Lohmann and D. P. Paris, "Binary Fraunhofer holograms, generated by computer," Appl. Opt. 6, 1739-1748 (1967).
27. K. Choi, J. Kim, Y. Lim, and B. Lee, "Full parallax viewing-angle enhanced computer-generated holographic 3D display system using integral lens array," Opt. Express 13, 10494-10502 (2005).
28. Y. Sando, M. Itoh, and T. Yatagai, "Fast calculation method for cylindrical computer-generated holograms," Opt. Express 13, 1418-1423 (2005).
29. M. L. Tachiki, Y. Sando, M. Itoh, and T. Yatagai, "Fast calculation method for spherical computer-generated holograms," Appl. Opt. 45, 3527-3533 (2006).
30. K. Okada, S. Yoshii, Y. Yamaji, J. Tsujiuchi and T. Ose, “Conical holographic stereograms,” Opt. Commun. 73, 347-350 (1989).
31. L. M. Murillo-Mora, K. Okada, T. Honda, and J. Tsujiuchi, “Color conical holographic stereogram,” Opt. Eng. 34, 814-818 (1995).
32. L. M. Murillo-Mora, K. Okada, T. Honda, and J. Tsuijiuchi, “Distortion compensation and perspective correction method for a conical holographic stereogram,” Opt. Eng. 36, 1706-1712 (1997).
33. Y. S. Cheng, S. Y. Chen, and R. C. Chang, “Distortion correction for conical multiplex holography using direct object-image relationship,” Proc. Natl. Sci. Counc. ROC (A) 25, 300-308 (2001).
34. Y. S. Cheng, W. H. Su, and R. C. Chang, “Disk-type multiplex holography,” Appl. Opt. 38, 3093-3100 (1999).
35. Hsuan Chen, E. N. Leith and Y. S. Cheng, “A method of image plane multiplex holography,” Opt. Commun. 48, 98–102 (1983).
36. Y. S. Cheng, H. J. Kuo, “Image-plane conical multiplex holography with astigmatic recording reference wave,” Proc. 19th International Commission for Optics, SPIE 4829, 551-552 (2002).
37. Y. S. Cheng and C. M. Lai, “Image-plane conical multiplex holography by one-step recording,” Opt. Eng. 42, 1631-1639 (2003).
38. L. Rosen, “Focused-image holography with extended sources,” Appl. Phys. Lett. 9, 337-339 (1966).
39. T. Honda, K. Okada, and J. Tsujiuchi, “3-D distortion of observed images reconstructed from a cylindrical holographic stereogram. (1) laser light reconstruction type,” Opt. Commun. 36, 11-16 (1981).
40. K. Okada, T. Honda, and J. Tsujiuchi, “3-D distortion of observed images reconstructed from a cylindrical holographic stereogram. (2) white light reconstruction type,” Opt. Commun. 36, 17-21 (1981).
41. K. Bazargan and M. R. B. Forshaw, “An image-plane hologram with non-image-plane motion parallax,” Opt. Commun. 32, 45–47 (1980).
42. Y. S. Cheng and R. C. Chang, “Image-plane cylindrical holographic stereogram,” Appl. Opt. 39, 4058-4069 (2000).
43. Y. S. Cheng and C. H. Chen, “Image-plane disk-type multiplex hologram,” Appl. Opt. 42, 7013-7022 (2003).
44. K. Okada, T. Honda and J. Tsujiuchi, “A method of distortion compensation of multiplex holograms,” Opt. Commun. 48, 167–170 (1983).
45. Juris Upatnieks and Jyung Jin Chang, “Noise reduction in holographic images,” Opt. Commun. 9, 348–349 (1973).
46. 陳志宏,鄭益祥,“成實像之圓盤型複合全像術,”Proc. II Optics and Photonics Taiwan '03, 402-404 (2003).
47. Y. S. Cheng and C. H. Chen, "Real image generation from an image-plane disk-type multiplex hologram," Proc. Photon04, Glasgow UK, 59 (2004).
48. 陳志宏,鄭益祥,謝易辰,“圓盤型複合全像術之動態影像展示,”Proc. I Optics and Photonics Taiwan '03, 227-229 (2003).
49. 陳志宏,鄭益祥,“同時產生虛像與實像之圓盤型複合全像片,”Proc. Optics and Photonics Taiwan '04, D-SA-Ⅵ2-5 (2004).
50. C. -H. Chen, Y. -S. Cheng, and Z. -Y. Lei, "Single-beam copying system of 360-degree viewable image-plane disk-type multiplex hologram and polarization effects on diffraction efficiency," Opt. Express 15, 10804-10813 (2007).
51. H. J. Caulfield, ed., Handbook of Optical Holography (Academic Press, New York, 1979), pp. 373-378.
52. 鄭益祥、陳志宏、蘇永添,“製作圓盤型複合全像展示片之裝置及方法,” 中華民國發明專利第206550號 (2004).
53. Y. S. Cheng, Y. T. Su, and C. H. Chen, “360-degree viewable image-plane disk-type multiplex holography,” in Frontiers in Optics, Laser Science XXI (Optical Society of America, 2005), paper FMD5.
54. E. Popov, J. Hoose, B. Frankel, C. Keast, M. Fritze, T. Fan, D. Yost, and S. Rabe, “Low polarization dependent diffraction grating for wavelength demultimlexing,” Opt. Express 12, 269-275 (2004).
55. J. R. Marciante, J. I. Hirsh, D. H. Raguin, and E. T. Prince, “Polarization-insensitive high-dispersion total internal reflection diffraction gratings,” J. Opt. Soc. Am. A 22, 299-305 (2005).
56. S. –D. Wu, T. K. Gaylord, and E. N. Glytsis, “Optimization of sawtooth surface-relief gratings: effects of substrate refractive index and polarization,” Appl. Opt. 45, 3420-3424 (2006).
57. T. Clausnitzer, T. Kämpfe, E. –B. Kley, A. Tünnermann, A. Tishchenko, and O. Parriaux, “Investigation of the polarization-dependent diffraction of deep dielectric rectangular transmission gratings illuminated in Littrow mounting,” Appl. Opt. 46, 819-826 (2007).
58. F. Canova, R. Clady, J. –P. Chambaret, M. Flury, S. Tonchev, R. Fechner, and O. Parriaux, “High-efficiency, broad band, high-damage threshold high-index gratings for femtosecond pulse compression,” Opt. Express 15, 15324-15334 (2007).
59. K. Yokomori, “Dielectric surface-relief gratings with high diffraction efficiency,” Appl. Opt. 23, 2303-2310 (1984).
60. R. J. Collier, C. B. Burckhardt and L. H. Lin, Optical Holography (Academic Press, New York, 1971).
61. G. Lippmann, “Epreuves reversibles,” Comptes Rendus 146, 446-451 (1908).
62. Yu N. Denisyuk, “Photographic reconstruction of the optical properties of an object in its own scattered radiation field,” Sov. Phys. Dokl. 7, 543-545 (1962).
63. Y. Taketomi and T. Kubota, "Reflection hologram for reconstructing deep images," Opt. Lett. 22, 1725-1727 (1997).
64. T. Kubota, Y. Awatsuji, and Y. Taketomi, “Resolution of a reflection hologram recorded with a slit,” Appl. Opt. 39, 3466-3472 (2000).
65. P. Trochtchanovitch, N. Kostrov, E. Goulanian, A. F. Zerrouk, E. Pen, and V. Shelkovnikov, “Method of characterization of effective shrinkage in reflection holograms, ” Opt. Eng. 43, 1160-1168 (2004).
66. J. M. Heaton and L. Solymar, “Wavelength and angular selectivity of high diffraction efficiency reflection holograms in silver halide photographic emulsion, ” Appl. Opt. 24, 2931-2936 (1985).
67. 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).
68. B. W. Shore, M. D. Perry, J. A. Britten, R. D. Boyd, M. D. Feit, H. T. Nguyen, R. Chow, G. E. Loomis, and L. Li, “Design of high-efficiency dielectric reflection gratings,” J. Opt. Soc. Am. A 14, 1124-1136 (1997).
69. J. Upatnieks, J. Marks, and R. Fedorowicz, “Color holograms for white light reconstruction, ” Appl. Phys. Lett. 8, 286-287 (1966).
70. L. H. Lin and C. V. LoBianco, “Experimental techniques in making multicolor white light reconstructed holograms, ” Appl. Opt. 6, 1255-1258 (1967).
71. D. R. Wuest and R. S. Lakes, “Color control in reflection holograms by humidity, ” Appl. Opt. 30, 2363-2367 (1991).
72. Y. -S. Cheng, C. -H. Chen, and Y. -C. Hsieh, "Reflection Disk-type Multiplex Holography Using Two-step Recording," accepted by Japanese Journal of Applied Physics (2008).
73. 陳志宏,鄭益祥,簡天隆,“擴展垂直視角之反射式圓盤型複合全像術,”Proc. Optics and Photonics Taiwan '05, D-FR-VI 2-4 (2005).
74. 陳志宏,鄭益祥,“以發散參考波製作之反射式圓盤型複合全像術,”Proc. Optics and Photonics Taiwan '05, PD-FR1-03 (2005).
75. J. W. Goodman: Introduction to Fourier Optics (McGraw-Hill, Singapore, 1996) 2nd ed., p. 329-345. |