Optical Technique, Volume. 47, Issue 3, 271(2021)
Fast calculation method for curved computer-generated hologram based on Double-step Fresnel Diffraction
[1] [1] Pan Y, Liu J, Li X, et al. A review of dynamic holographic three-dimensional display: algorithms, devices, and systems[J]. IEEE Translations on Industrial Informatics,2016,12(4):1599-1610.
[2] [2] Hackett M, Proctor M. Three-dimensional display technologies for anatomical education: a literature review[J]. Journal of Science Education and Technology,2016,25(4):641-654.
[3] [3] Kakue T, Wagatsuma Y, Yamada S, et al. Review of real-time reconstruction techniques for aerial-projection holographic displays[J]. Optical Engineering,2018,57(6):O61621.
[4] [4] Liu Y Z, Pang X N, Jiang S J, et al. Viewing-angle enlargement in holographic augmented reality using time division and spatial tiling[J]. Optics Express,2013,21(10):12068-12076.
[5] [5] Mishina T, Okui M, Okano F. Viewing-zone enlargement method for sampled hologram that uses high-order diffraction[J]. Applied Optics,2002,41(8):1489-1499.
[6] [6] Ohmura N, Kang H. Yamaguchi T, et al. A method to increase the hologram viewing angle by the beam reconfiguration[C]∥Proc. SPIE 6912, Practical Holography XXII:Materials and Application.California,United States:SPIE,2008:69120O.
[7] [7] Takaki Y, Hayashi Y. Increased horizontal viewing zone angle of a hologram by resolution redistribution of a spatial light modulator[J]. Applied Optics,2008,47(19):D6-D11.
[8] [8] Hahn J, Kim H, Lim Y, et al. Wide viewing angle dynamic holographic stereogram with a curved array of spatial light modulators[J]. Optics Express,2008,16(16):12372-12386.
[9] [9] Yaras F, Kang H, Onural L. Circular holographic video display system[J]. Optics Express,2011,19(10):9147-9156.
[10] [10] Kozacki T, Kujawińska M, Finke G, et al. Extended viewing angle holographic display system with tilted SLMs in a circular configuration[J]. Applied Optics,2014,51(11):1771-1780.
[11] [11] Kozacki T, Finke G, Garbat P, et al. Wide-angle holographic display system with spatiotemporal multiplexing[J]. Optics Express,2012,20(25):27473-27481.
[12] [12] Mishina T, Okano F, Yuyama I. Time-alternating method based on single-sideband holography with half-zone-plate processing for the enlargement of viewing zones[J]. Applied Optics,1999,38(17):3703-3713.
[13] [13] Chen R H Y, Wilkinson T D. Field of view expansion for 3-D holographic display using a single spatial light modulator with scanning reconstruction light[C]∥2009 3DTV Conference: The True Vision Capture, Transmission and Display of 3D Video. Potsdam, Germany:IEEE,2009:1-4.
[14] [14] Li X, Liu J, Zhao T, et al. Color dynamic holographic display with wide viewing angle by improved complex amplitude modulation[J]. Optics Express,2018,26(3):2349-2358.
[15] [15] Jackin B J, Yatagai T. 360° Reconstruction of a 3D object using cylindrical computer-generated holography[J]. Applied Optics,2011,50(34):H147-H152.
[16] [16] Sando Y, Barada D, Jackin B J, et al. Fast calculation method for computer-generated cylindrical holograms based on the three-dimensional Fourier spectrum[J]. Optics Letters,2013,38(23): 5172-5175.
[17] [17] Sando Y, Barada D, Jackin B J, et al. Bessel function expansion to reduce the calculation time and memory usage for cylindrical computer-generated holograms[J]. Applied Optics,2017,56(20):5775-5780.
[18] [18] Sando Y, Itoh M. Fast calculation method for cylindrical computer-generated holograms[J]. Optics Express,2005,13(5):1418-1423.
[19] [19] Kashiwagi A, Sakamoto Y. A fast calculation method of cylindrical computer-generated holograms which perform image-reconstruction of volume data[C]∥Adaptive Optics: Analysis and Methods/Computational Optical Sensing and Imaging/Information Photonics/Signal Recovery and Synthesis Topical Meetings on CD-ROM. Vancouver,Canada:OSA,2007:DWB7.
[20] [20] Jackin B J, Yatagai T. Fast calculation method for computer-generated cylindrical hologram based on wave propagation in spectral domain[J]. Optics Express,2010,18(25):25546-25555.
[21] [21] Zhao Y, Piao M, Li G, et al. Fast calculation method of computer-generated cylindrical hologram using wave-front recording surface[J]. Optics Letters,2015,40(13):3017-3020.
[22] [22] Xue G, Zhang Q, Liu J, et al. Flexible holographic 3D display with wide viewing angle[C]∥OSA Technical Digest, Rochester, New York:OSA,2016:FTu5A.3.
[23] [23] Kang R, Liu J, Xue G, et al. Curved multiplexing computer-generated hologram for 3D holographic display[J]. Optics Express,2019,27(10):14369-14380.
[24] [24] Kang R, Liu J, Pi D, et al. Fast method for calculating a curved hologram in a holographic display[J]. Optics Express,2020,28(8):11290-11300.
[25] [25] Pi D, Liu J, Kang R, et al. Accelerating calculation method for curved computer-generated hologram using look-up table in holographic display[J]. Optics Communications,2021,485:126750-126755.
[26] [26] Zhang F, Yamaguchi I, Yaroslavsky L P. Algorithm for reconstruction of digital holograms with adjustable magnification[J]. Optics Letters,2004,29:1668-1670.
[28] [28] J W Goodman. Introduction to Fourier Optics, 3rd ed[M]. McGraw-Hill College, Roberts & Co. Publishers,2005.
[29] [29] Georgiou A, Christmas J, Collings,N, et al. Aspects of hologram calculation for video frames[J]. Journal of Optics A: Pure and Applied Optics,2008,10(3):035302.
[30] [30] Zhao Y, Cao L, Zhang H, et al. Accurate calculation of computer-generated holograms using angular-spectrum layer-oriented method[J]. Optics Express,2015,23(20):25440-9.
[31] [31] Y M Engelberg, S Ruschin. Fast method for physical optics propagation of high-numerical-aperture beams[J]. Journal of the Optical Society of America A,2004:21(11),2135-2145.
Get Citation
Copy Citation Text
YU Shuang, PI Dapu, KANG Ruidan, LIU Juan. Fast calculation method for curved computer-generated hologram based on Double-step Fresnel Diffraction[J]. Optical Technique, 2021, 47(3): 271
Category:
Received: Dec. 25, 2020
Accepted: --
Published Online: Aug. 22, 2021
The Author Email: Shuang YU (shuangyu_18@163.com)
CSTR:32186.14.