• Chinese Optics Letters
  • Vol. 18, Issue 7, 070901 (2020)
Hiromi Sannomiya1, Naoki Takada2、*, Kohei Suzuki1, Tomoya Sakaguchi1, Hirotaka Nakayama3, Minoru Oikawa2, Yuichiro Mori2, Takashi Kakue4, Tomoyoshi Shimobaba4, and Tomoyoshi Ito4
Author Affiliations
  • 1Graduate School of Integrated Arts and Sciences, Kochi University, Kochi 780-8520, Japan
  • 2Research and Education Faculty, Kochi University, Kochi 780-8520, Japan
  • 3National Astronomical Observatory of Japan, Mitaka 181-8588, Japan
  • 4Graduate School of Engineering, Chiba University, Inage-ku 263-8522, Japan
  • show less
    DOI: 10.3788/COL202018.070901 Cite this Article Set citation alerts
    Hiromi Sannomiya, Naoki Takada, Kohei Suzuki, Tomoya Sakaguchi, Hirotaka Nakayama, Minoru Oikawa, Yuichiro Mori, Takashi Kakue, Tomoyoshi Shimobaba, Tomoyoshi Ito. Real-time spatiotemporal division multiplexing electroholography for 1,200,000 object points using multiple-graphics processing unit cluster[J]. Chinese Optics Letters, 2020, 18(7): 070901 Copy Citation Text show less
    References

    [1] S. A. Benton, J. V. M. Bove. Holographic Imaging(2008).

    [2] T. Sugie, T. Akamatsu, T. Nishitsuji, R. Hirayama, N. Masuda, H. Nakayama, Y. Ichihashi, A. Shiraki, M. Oikawa, N. Takada, Y. Endo, T. Kakue, T. Shimobaba, T. Ito. Nat. Electron., 1, 254(2018).

    [3] Y. Mori, T. Fukuoka, T. Nomura. Appl. Opt., 53, 8182(2014).

    [4] N. Takada, M. Fujiwara, C. W. Ooi, Y. Maeda, H. Nakayama, T. Kakue, T. Shimobaba, T. Ito. IEICE Trans. Electron., E100.C, 978(2017).

    [5] Y. Yamamoto, H. Nakayama, N. Takada, T. Nishitsuji, T. Sugie, T. Kakue, T. Shimobaba, T. Ito. Opt. Express, 26, 34259(2018).

    [6] N. Masuda, T. Ito, T. Tanaka, A. Shiraki, T. Sugie. Opt. Express, 14, 603(2006).

    [7] A. Shiraki, N. Takada, M. Niwa, Y. Ichihashi, T. Shimobaba, N. Masuda, T. Ito. Opt. Express, 17, 16038(2009).

    [8] Y. Pan, X. Xu, S. Solanki, X. Liang, R. B. A. Tanjung, C. Tan, T.-C. Chong. Opt. Express, 17, 18543(2009).

    [9] P. Tsang, W. K. Cheung, T.-C. Poon, C. Zhou. Opt. Express, 19, 15205(2011).

    [10] J. Weng, T. Shimobaba, N. Okada, H. Nakayama, M Oikawa, N. Masuda, T. Ito. Opt. Express, 20, 4018(2012).

    [11] G. Li, K. Hong, J. Yeom, N. Chen, J.-H. Park, N. Kim, B. Lee. Chin. Opt. Lett., 12, 060016(2014).

    [12] Z. Chen, X. Sang, Q. Lin, J. Li, X. Yu, X. Gao, B. Yan, C. Yu, W. Dou, L. Xiao. Chin. Opt. Lett., 14, 080901(2016).

    [13] Y. Zhang, J. Liu, X. Li, Y. Wang. Chin. Opt. Lett., 14, 030901(2016).

    [14] D.-W. Kim, Y.-H. Lee, Y.-H. Seo. Appl. Opt., 57, 3511(2018).

    [15] H. Niwase, N. Takada, H. Araki, H. Nakayama, A. Sugiyama, T. Kakue, T. Shimobaba, T. Ito. Opt. Express, 22, 28052(2014).

    [16] N. Takada, T. Shimobaba, H. Nakayama, A. Shiraki, N. Okada, M. Oikawa, N. Masuda, T. Ito. Appl. Opt., 51, 7303(2012).

    [17] Y. Pan, X. Xu, X. Liang. Appl. Opt., 52, 6562(2013).

    [18] B. J. Jackin, H. Miyata, T. Ohkawa, K. Ootsu, T. Yokota, Y. Hayasaki, T. Yatagai, T. Baba. Opt. Lett., 39, 6867(2014).

    [19] B. J. Jackin, S. Watanabe, K. Ootsu, T. Ohkawa, T. Yokota, Y. Hayasaki, T. Yatagai, T. Baba. Appl. Opt., 57, 3134(2018).

    [20] T. Baba, S. Watanabe, B. J. Jackin, K. Ootsu, T. Ohkawa, T. Yokota, Y. Hayasaki, T. Yatagai. IEICE Trans. Inf. Sys., E102.D, 1310(2019).

    [21] H. Niwase, N. Takada, H. Araki, Y. Maeda, M. Fujiwara, H. Nakayama, T. Kakue, T. Shimobaba, T. Ito. Opt. Eng., 55, 093108(2016).

    [22] H. Araki, N. Takada, S. Ikawa, H. Niwase, Y. Maeda, M. Fujiwara, H. Nakayama, M. Oikawa, T. Kakue, T. Shimobaba, T. Ito. Chin. Opt. Lett., 15, 120902(2017).

    [23] S. Ikawa, N. Takada, H. Araki, H. Niwase, H. Sannomiya, H. Nakayama, M. Oikawa, Y. Mori, T. Kakue, T. Shimobaba, T. Ito. Chin. Opt. Lett., 18, 010901(2020).

    [24] H. Sannomiya, N. Takada, T. Sakaguchi, H. Nakayama, M. Oikawa, Y. Mori, T. Kakue, T. Shimobaba, T. Ito. Chin. Opt. Lett., 18, 020902(2020).

    [25] W.-H. Lee. Appl. Opt., 18, 3661(1979).

    [26] A. Waterman, D. Patterson. Commun. ACM, 52, 65(2009).

    CLP Journals

    [1] Kohei Suzuki, Minori Tao, Yuki Maeda, Hirotaka Nakayama, Ren Noguchi, Minoru Oikawa, Yuichiro Mori, Takashi Kakue, Tomoyoshi Shimobaba, Tomoyoshi Ito, Naoki Takada. High-speed playback of spatiotemporal division multiplexing holographic 3D video stored in a solid-state drive using a digital micromirror device[J]. Chinese Optics Letters, 2021, 19(9): 093301

    [2] Ren Noguchi, Kohei Suzuki, Yoshiki Moriguchi, Minoru Oikawa, Yuichiro Mori, Takashi Kakue, Tomoyoshi Shimobaba, Tomoyoshi Ito, Naoki Takada. Real-time gradation-expressible amplitude-modulation-type electroholography based on binary-weighted computer-generated hologram[J]. Chinese Optics Letters, 2021, 19(11): 110501

    [3] Kohei Suzuki, Minori Tao, Yuki Maeda, Hirotaka Nakayama, Ren Noguchi, Minoru Oikawa, Yuichiro Mori, Takashi Kakue, Tomoyoshi Shimobaba, Tomoyoshi Ito, Naoki Takada. High-speed playback of spatiotemporal division multiplexing holographic 3D video stored in a solid-state drive using a digital micromirror device[J]. Chinese Optics Letters, 2021, 19(9): 093301

    Data from CrossRef

    [1] Yota Yamamoto, Tomoyoshi Shimobaba, Hirotaka Nakayama, Takashi Kakue, Nobuyuki Masuda, Tomoyoshi Ito. System-on-a-chip-based special-purpose computer for phase electroholography. OSA Continuum, 3, 3407(2020).

    Hiromi Sannomiya, Naoki Takada, Kohei Suzuki, Tomoya Sakaguchi, Hirotaka Nakayama, Minoru Oikawa, Yuichiro Mori, Takashi Kakue, Tomoyoshi Shimobaba, Tomoyoshi Ito. Real-time spatiotemporal division multiplexing electroholography for 1,200,000 object points using multiple-graphics processing unit cluster[J]. Chinese Optics Letters, 2020, 18(7): 070901
    Download Citation