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디지털 홀로그램 (CGH) 생성 기술  

Gang, Hun-Jong (전자부품연구원)
Min, Byeong-Gi ((주)아스텔)
Hong, Seong-Hui (전자부품연구원)
Kim, Yeong-Min (전자부품연구원)
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1 Masahiro Yamaguchi, Hideshi Hoshino, Toshio Honda, and Nagaaki Ohyama. Phase-added stereogram: calculation of hologram using computer graphics technique. In Practical Holography VII: Imaging and Materials, volume 1914, pages 25.31. SPIE, 1993.
2 Hiroshi Yoshikawa and Hirokazu Kameyama. Integral holography. In Practical Holography IX, volume 2406, pages 226.234. SPIE, 1995.
3 H. Kang. Quality improvements of the coherent holographic stereogram for natural 3D display and its applications. In PhD. Thesis, Nihon University, 2008.
4 Hoonjong Kang, Fahri Yaras, Levent Onural, and Hiroshi Yoshikawa. Realtime fringe pattern generation with high quality. In Digital Holography and Three-Dimensional Imaging, page DTuB7. Optical Society of America, 2009.
5 Fahri Yaras, Hoonjong Kang, and Levent Onural. Real-time multiple SLM color holographic display using multiple GPU acceleration. In Digital Holography and Three-Dimensional Imaging, page DWA4. Optical Society of America, 2009.
6 H. Kang, F. Yaras, and L. Onural. Quality comparison and acceleration for digital hologram generation method based on segmentation. In 3DTV Conference: The True Vision - Capture, Transmission and Display of 3D Video, IEEE, 2009.
7 F. Yaras, H. Kang, and L. Onural. Realtime color holographic video display system. In 3DTV Conference: The True Vision - Capture, Transmission and Display of 3D Video, IEEE, 2009.
8 Y. Ichihashi, T. Ito, H. Nakayama, N. Masuda, A. Shiraki, and T. Shimobaba. Development of specialpurpose computer HORN-6 for holography. 3D Image Conference 2008, 2008.
9 TomoyoshiIto , Nobuyuki Masuda, Kotaro Yoshimura, Atsushi Shiraki, Tomoyoshi Shimobaba, and Takashige Sugie. Special-purpose computer HORN-5 for a real-time electroholography. Opt. Express, 13(6):1923.1932, 2005.   DOI
10 Shimobaba T., , Masuda N, Sugie T, Hosono S, Tsukui S, and Ito T. Specialpurpose computer for holography HORN-3 with pld technology. Computer Physics Communications, 130, July 2000.
11 T. Ito, T. Yabe, M. Okazaki, and M. Yanagi. Specialpurpose computer HORN-1 for reconstruction of virtual image in three dimensions. Comp. Phys. Commun., 82(2-3):104.110, 1994.   DOI   ScienceOn
12 T. Ito, H. Eldeib, K. Yoshida, S. Takahashi, T. Yabe, and T. Kunugi. Special-purpose computer for holography HORN-2. Comp. Phys. Commun., 93:13.20, 1996.   DOI   ScienceOn
13 Tomohisa Hamano and Hiroshi Yoshikawa. Imagetype CGH by means of e-beam printing. In SPIE, Practical Holography XII, volume 3293, pages 2.14, 1998.
14 Takeshi Yamaguchi, Gen Okabe, and Hiroshi Yoshikawa. Real-time image plane full-color and full-parallax holographic video display system. Optical Engineering, 46(12):125801, 2007.   DOI   ScienceOn
15 Takeshi Yamaguchi and Hiroshi Yoshikawa. Real time calculation for holographic video display. In SPIE, Practical Holography XX: Materials and Applications, volume 6136, page 61360T, 2006.
16 Toyohiko Yatagai. Stereoscopic approach to 3-D display using computergenerated holograms. Appl. Opt., 15(11):2722.2729, 1976.   DOI   ScienceOn
17 Hoonjong Kang, Takeshi Yamaguchi, Hiroshi Yoshikawa, Seung-Cheol Kim, and Eun-Soo Kim. Acceleration method of computing a compensated phaseadded stereogram on a graphic processing unit. Appl. Opt., 47(31):5784. 5789, 2008.   DOI
18 Hoonjong Kang, Takeshi Yamaguchi, and Hiroshi Yoshikawa. Accurate phase-added stereogram to improve the coherent stereogram. Appl. Opt., 47(19):D44.D54, 2008.   DOI
19 H. Yoshikawa J. Tamai. Faster computation of subsampled coherent stereogram (in japanese). In The Journal of the Institute of Television Engineers of Japan, volume 50, pages 1612.1615, 1996.   DOI   ScienceOn
20 Hoonjong Kang, Tomohiko Fujii, Takeshi Yamaguchi, and Hiroshi Yoshikawa. Compensated phase-added stereogram for real-time holographic display. Optical Engineering, 46(9):095802, 2007.   DOI   ScienceOn
21 M. Reicherter, T. Haist, S. Zwick, A. Burla, L. Seifert, and W. Osten, "Fast hologram computation and aberration control for holographic tweezers," (SPIE, 2005), vol. 5930, pp. 59301Y+.
22 T. Shimobaba, Y. Sato, J. Miura, M. Takenouchi, and T. Ito, "Real-time digital holographic microscopy using the graphic processing unit," Opt. Express 16, 11776.11781 (2008).   DOI
23 F. Yaras, H. Kang, and L. Onural, "Real-time multiple slm color holographic display using multiple gpu acceleration," (Optical Society of America, 2009), OSA Technical Digest (CD), pp. DWA4+.
24 M. Montes-Usategui, E. Pleguezuelos, J. Andilla, and E. Martn-Badosa, "Fast generation of holographic optical tweezers by random mask encoding of fourier components," Opt. Express 14, 2101.2107 (2006).   DOI
25 F. Belloni and S. Monneret, "Quadrant kinoform: an approach to multiplane dynamic three-dimensional holographic trapping," Appl. Opt. 46, 4587.4593 (2007).   DOI
26 J. Amako, H. Miura, and T. Sonehara, "Speckle-noise reduction on kinoform reconstruction using a phaseonly spatial light modulator," Appl. Opt. 34, 3165. 3171 (1995).   DOI
27 L. Golan and S. Shoham, "Speckle elimination using shift-averaging in high-rate holographic projection," Opt. Express 17, 1330.1339 (2009).   DOI
28 D. O' Brien , T . Wilkinson , and R. Mears, "Programmable cghs with large space bandwith product," in "4th international Conference on Holographic Systems, Components and Applications, IEEE Proceedings," vol. 379 (1993), vol. 379.
29 J. P. Allebach, N. C. Gallagher, and B. Liu, "Aliasing error in digital holography," Appl. Opt. 15, 2183.2188 (1976).   DOI
30 R. Brauer, F. Wyrowski, and O. Bryngdahl, "Diffusers in digital holography," J. Opt. Soc. Am. A 8, 572.578 (1991).   DOI
31 H. Aagedal, M. Schmid, T. Beth, S. Teiwes, and F.Wyrowski, "Theory of speckles in diffractive optics and its application to beam shaping," Journal of Modern Optics pp. 1409.1421 (1996).
32 T. Shimobaba, S. Hishinuma, and T. Ito. Specialpurpose computer for holography HORN-4 with recurrence algorithm. Computer Physics Communications, 148(2):160 . 170, 2002.   DOI   ScienceOn
33 Takashi YABE, Tomoyoshi ITO, and Masashi OKAZAKI. Holography machine HORN-1 for computer-aided retrieval of virtual threedimensional image. Japanese journal of applied physics. Pt. 2, Letters, 32:L1359.L1361, 1993.   DOI   ScienceOn
34 J. Xia and H. Yin, "Three-dimensional light modulation using phase-only spatial light modulator," Optical Engineering 48, 020502 (2009).   DOI   ScienceOn
35 D. Engstroem, A. Frank, J. Backsten, M. Goksoer, and J. Bengtsson, "Grid-free 3d multiple spot generation with an efficient single-plane fft-based algorithm," Opt. Express 17, 9989.10000 (2009).   DOI
36 J.-Y. Zhuang and O. K. Ersoy, "Fast decimationin- frequency direct binary search algorithms for synthesis of computer-generated holograms," J. Opt. Soc. Am. A 11, 135.143 (1994).   DOI   ScienceOn
37 V. Boutenko and R. Chevallier, "Second order direct binary search algorithm for the synthesis of computer-generated holograms," Optics Communications 125, 38 43 . 47 (1996).   DOI   ScienceOn
38 S. Kirkpatrick, C. Gelatt, and M. Vecchi, "Optimization by simualted annealing," Science 220, 671 (1983).   DOI   ScienceOn
39 M. Clark and R. Smith, "A direct-search method for the computer design of holograms," Optics Communications 124, 150 . 164 (1996).   DOI   ScienceOn
40 L. Ingber, "Very fast simulated re-annealing," Tech. rep.
41 N. Tanabe, Y. Ichihashi, H. Nakayama, N. Masuda, and T. Ito, "Speed-up of hologram generation using clearspeed accelerator board," Computer Physics Communications 180, 1870 . 1873 (2009).   DOI   ScienceOn
42 T. Ito, N. Masuda, K. Yoshimura, A. Shiraki, T. Shimobaba, and T. Sugie, "Special.purpose computer horn-5 for a real-time electroholography," Optics Express 13, 1932.1932 (2005). 11a2.
43 Y.-H. Seo, H.-J. Cho, and D.-W. Kim, "Highperformance cgh processor for realtime digital holography," Biomedical Optics p. JMA9 (2008).
44 T. Ito and T. Shimobaba, "One-unit system for electroholography by use of a special-purpose computational chip with a high-resolution liquidcrystal display toward a three-dimensional television," Optics Express 12, 2004 (2004). 11a2. 39
45 T. Haist, M. Reicherter, M. Wu, and L. Seifert, "How to use your graphics board for the computation of holograms," Computing in Science & Engineering (2005).
46 James D Trolinger. Optical holography: Principles, techniques and applications (2nd edn). Measurement Science and Technology, 8(3), 1997.
47 A. Georgiou, J. Christmas, N. Collings, J. Moore, and W. A. Crossland, "Aspects of hologram calculation for video frames," Journal of Optics A: Pure and Applied 36 Optics 10, 035302+, 2008.
48 R. Gerchberg and W. Saxton, "A practical algorithm for the determination of phase from image and diffraction plane pictures," Optik 35, 237.246 (1972).
49 F. Wyrowski and O. Bryngdahl, "Iterative fourier-transform algorithm applied to computer holography," J. Opt. Soc. Am. A 5, 1058.1065 (1988).   DOI
50 J. Fienup, "Iterative method applied to image reconstruction and to computer. generated holograms," Optical Engineering 19, 297 (1980).
51 M. Seldowitz, J. Allebach, and D. Sweeney, "Synthesis of digital holograms by direct binary search," Applied Optics 26, 2788.2798 (1987).   DOI
52 F. Wyrowski, "Iterative quantization of digital amplitude holograms," Appl. Opt.28, 3864.3870(1989).   DOI   ScienceOn
53 B. K. Jennison and J. P. Allebach, "Analysis of the leakage from computergenerated holograms synthesized by direct binary search," J. Opt. Soc. Am. A 6, 234.243 (1989).   DOI
54 B. K. Jennison, J. P. Allebach, and D. W. Sweeney, "Efficient design of directbinary - search computergenerated holograms," J. Opt. Soc. Am. A 8, 652.660, 1991.   DOI
55 T. Dresel, M. Beyerlein, and J. Schwider, "Design of computer-generated beamshaping holograms by iterative finite-element mesh adaption," Appl. Opt. 35, 6865.6874 (1996).   DOI
56 G. WhyteandJ . Courtial," Experimental demonstration of holographic three dimensional light shaping using a gerchberg-saxton algorithm," New Journal of Physics 7, 117 (2005).   DOI   ScienceOn
57 G. Sinclair, J. Leach, P. Jordan, G. Gibson, E. Yao, Z. J. Laczik, M. J. Padgett, and J. Courtial, "Interactive application in holographic optical tweezers of a multiplane gerchberg-saxton algorithm for threedimensional light shaping," Optics Express 12, 1665.1670 (2004).   DOI
58 Marc Levoy. Light fields and computational imaging. Computer, 39(8):46. 55, 2006.
59 G. Dueck and T. Scheuer, "Threshold accepting: A general purpose optimization algorithm appearing superior to simulated annealing," Journal of Computational Physics 90, 161 . 175 (1990).   DOI   ScienceOn
60 49. T. Haist, M. Schonleber, and H. J. Tiziani, "Computer-generated holograms from 3d-objects written on twisted-nematic liquid crystal displays," Optics Communications 140, 299 . 308 (1997).   DOI