X. Yang, H. Wang, Y. Li, F. Xu, J. H. Zhang, and H. Zhang, “Large scale and high resolution computer generated synthetic color rainbow hologram,” J. Opt. 21, 025601 (2019).
[Crossref]
O. Kunieda and K. Matsushima, “Large-scale full-color computer-generated display holograms created by stacking transferred volume holograms,” Proc. SPIE 11062, 1106203 (2019).
[Crossref]
K. Matsushima and N. Sonobe, “Full-color digitized holography for large-scale holographic 3D imaging of physical and nonphysical objects,” Appl. Opt. 57, A150–A156 (2018).
[Crossref]
X. Yang, H. Wang, Y. Li, F. Xu, J. H. Zhang, and H. Zhang, “Large scale and high resolution color Fresnel holographic 3D display using RGB LED illumination,” Proc. SPIE 10964, 109642G (2018).
[Crossref]
Y. Ichihashi, K. Yamamoto, K. Wakunami, R. Oi, M. Okui, and T. Senoh, “An analysis of printing conditions for wavefront overlapping printing,” Proc. SPIE 10127, 101270L (2017).
[Crossref]
H. Nishi and K. Matsushima, “Rendering of specular curved objects in polygon-based computer holography,” Appl. Opt. 56, F37–F44 (2017).
[Crossref]
Y. Tsuchiyama and K. Matsushima, “Full-color large-scaled computer-generated holograms using RGB color filters,” Opt. Express 25, 2016–2030 (2017).
[Crossref]
K. Wakunami, R. Oi, T. Senoh, H. Sasaki, Y. Ichihashi, and K. Yamamoto, “Wavefront printing technique with overlapping approach toward high definition holographic image reconstruction,” Proc. SPIE 9867, 98670J (2016).
[Crossref]
Y. Kim, E. Stoykova, H. Kang, S. Hong, J. Park, J. Park, and J. Hong, “Seamless full color holographic printing method based on spatial partitioning of SLM,” Opt. Express 23, 172–182 (2015).
[Crossref]
T. Miyaoka, K. Matsushima, and S. Nakahara, “Optimization of design-wavelength for unobtrusive chromatic aberration in high-definition color computer holography,” Proc. SPIE. 9386, 93860N (2015).
[Crossref]
Y. Shi, H. Wang, and Q. Wu, “Color evaluation of computer-generated color rainbow holography,” J. Opt. 15, 025701 (2013).
[Crossref]
T. Yamaguchi, O. Miyamoto, and H. Yoshikawa, “Volume hologram printer to record the wavefront of three-dimensional objects,” Opt. Eng. 51, 075802 (2012).
[Crossref]
F. Yang, Y. Murakami, and M. Yamaguchi, “Digital color management in full-color holographic three-dimensional printer,” Appl. Opt. 51, 4343–4352 (2012).
[Crossref]
K. Matsushima, H. Nishi, and S. Nakahara, “Simple wave-field rendering for photorealistic reconstruction in polygon-based high-definition computer holography,” J. Electron. Imaging 21, 023002 (2012).
[Crossref]
K. Matsushima, Y. Arima, and S. Nakahara, “Digitized holography: modern holography for 3D imaging of virtual and real objects,” Appl. Opt. 50, H278–H284 (2011).
[Crossref]
W. Freese, T. Kämpfe, W. Rockstroh, E.-B. Kley, and A. Tünnermann, “Optimized electron beam writing strategy for fabricating computer-generated holograms based on an effective medium approach,” Opt. Express 19, 8684–8692 (2011).
[Crossref]
H. Yoshikawa and T. Yamaguchi, “Computer-generated holograms for 3D display,” Chin. Opt. Lett. 7, 1079–1082 (2009).
[Crossref]
Y. Shi, H. Wang, Y. Li, H. Jin, and L. Ma, “Practical method for color computer-generated rainbow holograms of real-existing objects,” Appl. Opt. 48, 4219–4226 (2009).
[Crossref]
K. Matsushima and S. Nakahara, “Extremely high-definition full-parallax computer-generated hologram created by the polygon-based method,” Appl. Opt. 48, H54–H63 (2009).
[Crossref]
K. Matsushima and T. Shimobaba, “Band-limited angular spectrum method for numerical simulation of free-space propagation in far and near fields,” Opt. Express 17, 19662–19673 (2009).
[Crossref]
N. S. Merzlyakov and M. G. Mozerov, “Computer-generated true-color rainbow holograms,” Opt. Laser Eng. 29, 369–376 (1998).
[Crossref]
H. I. Bjelkhagen and D. Brotherton-Ratcliffe, Ultra-Realistic Imaging (CRC Press, 2013), Chap. 7.
Y. Ichihashi, K. Yamamoto, K. Wakunami, R. Oi, M. Okui, and T. Senoh, “An analysis of printing conditions for wavefront overlapping printing,” Proc. SPIE 10127, 101270L (2017).
[Crossref]
K. Wakunami, R. Oi, T. Senoh, H. Sasaki, Y. Ichihashi, and K. Yamamoto, “Wavefront printing technique with overlapping approach toward high definition holographic image reconstruction,” Proc. SPIE 9867, 98670J (2016).
[Crossref]
W. Freese, T. Kämpfe, W. Rockstroh, E.-B. Kley, and A. Tünnermann, “Optimized electron beam writing strategy for fabricating computer-generated holograms based on an effective medium approach,” Opt. Express 19, 8684–8692 (2011).
[Crossref]
T. Kämpfe, E. Kley, A. Tünnermann, and P. Dannberg, “Design and fabrication of stacked, computer generated holograms for multicolor image generation,” Appl. Opt. 46, 5482–5488 (2007).
[Crossref]
O. Kunieda and K. Matsushima, “Large-scale full-color computer-generated display holograms created by stacking transferred volume holograms,” Proc. SPIE 11062, 1106203 (2019).
[Crossref]
X. Yang, H. Wang, Y. Li, F. Xu, J. H. Zhang, and H. Zhang, “Large scale and high resolution computer generated synthetic color rainbow hologram,” J. Opt. 21, 025601 (2019).
[Crossref]
X. Yang, H. Wang, Y. Li, F. Xu, J. H. Zhang, and H. Zhang, “Large scale and high resolution color Fresnel holographic 3D display using RGB LED illumination,” Proc. SPIE 10964, 109642G (2018).
[Crossref]
Y. Shi, H. Wang, Y. Li, H. Jin, and L. Ma, “Practical method for color computer-generated rainbow holograms of real-existing objects,” Appl. Opt. 48, 4219–4226 (2009).
[Crossref]
O. Kunieda and K. Matsushima, “Large-scale full-color computer-generated display holograms created by stacking transferred volume holograms,” Proc. SPIE 11062, 1106203 (2019).
[Crossref]
K. Matsushima and N. Sonobe, “Full-color digitized holography for large-scale holographic 3D imaging of physical and nonphysical objects,” Appl. Opt. 57, A150–A156 (2018).
[Crossref]
H. Nishi and K. Matsushima, “Rendering of specular curved objects in polygon-based computer holography,” Appl. Opt. 56, F37–F44 (2017).
[Crossref]
Y. Tsuchiyama and K. Matsushima, “Full-color large-scaled computer-generated holograms using RGB color filters,” Opt. Express 25, 2016–2030 (2017).
[Crossref]
T. Miyaoka, K. Matsushima, and S. Nakahara, “Optimization of design-wavelength for unobtrusive chromatic aberration in high-definition color computer holography,” Proc. SPIE. 9386, 93860N (2015).
[Crossref]
W. Nishii and K. Matsushima, “A wavefront printer using phase-only spatial light modulator for producing computer-generated volume holograms,” Proc. SPIE 9006, 90061F (2014).
[Crossref]
K. Matsushima, M. Nakamura, and S. Nakahara, “Silhouette method for hidden surface removal in computer holography and its acceleration using the switch-back technique,” Opt. Express 22, 24450–24465 (2014).
[Crossref]
K. Matsushima, H. Nishi, and S. Nakahara, “Simple wave-field rendering for photorealistic reconstruction in polygon-based high-definition computer holography,” J. Electron. Imaging 21, 023002 (2012).
[Crossref]
K. Matsushima, Y. Arima, and S. Nakahara, “Digitized holography: modern holography for 3D imaging of virtual and real objects,” Appl. Opt. 50, H278–H284 (2011).
[Crossref]
K. Matsushima and T. Shimobaba, “Band-limited angular spectrum method for numerical simulation of free-space propagation in far and near fields,” Opt. Express 17, 19662–19673 (2009).
[Crossref]
K. Matsushima and S. Nakahara, “Extremely high-definition full-parallax computer-generated hologram created by the polygon-based method,” Appl. Opt. 48, H54–H63 (2009).
[Crossref]
K. Matsushima, “Computer-generated holograms for three-dimensional surface objects with shade and texture,” Appl. Opt. 44, 4607–4614 (2005).
[Crossref]
K. Matsushima and S. Nakahara, “Stepping closer to the perfect 3D digital image,” SPIE Newsroom, 2012, https://spie.org/news/4526-stepping-closer-to-the-perfect-3d-digital-image?SSO=1.
[Crossref]
N. S. Merzlyakov and M. G. Mozerov, “Computer-generated true-color rainbow holograms,” Opt. Laser Eng. 29, 369–376 (1998).
[Crossref]
T. Yamaguchi, O. Miyamoto, and H. Yoshikawa, “Volume hologram printer to record the wavefront of three-dimensional objects,” Opt. Eng. 51, 075802 (2012).
[Crossref]
T. Miyaoka, K. Matsushima, and S. Nakahara, “Optimization of design-wavelength for unobtrusive chromatic aberration in high-definition color computer holography,” Proc. SPIE. 9386, 93860N (2015).
[Crossref]
N. S. Merzlyakov and M. G. Mozerov, “Computer-generated true-color rainbow holograms,” Opt. Laser Eng. 29, 369–376 (1998).
[Crossref]
T. Miyaoka, K. Matsushima, and S. Nakahara, “Optimization of design-wavelength for unobtrusive chromatic aberration in high-definition color computer holography,” Proc. SPIE. 9386, 93860N (2015).
[Crossref]
K. Matsushima, M. Nakamura, and S. Nakahara, “Silhouette method for hidden surface removal in computer holography and its acceleration using the switch-back technique,” Opt. Express 22, 24450–24465 (2014).
[Crossref]
K. Matsushima, H. Nishi, and S. Nakahara, “Simple wave-field rendering for photorealistic reconstruction in polygon-based high-definition computer holography,” J. Electron. Imaging 21, 023002 (2012).
[Crossref]
K. Matsushima, Y. Arima, and S. Nakahara, “Digitized holography: modern holography for 3D imaging of virtual and real objects,” Appl. Opt. 50, H278–H284 (2011).
[Crossref]
K. Matsushima and S. Nakahara, “Extremely high-definition full-parallax computer-generated hologram created by the polygon-based method,” Appl. Opt. 48, H54–H63 (2009).
[Crossref]
K. Matsushima and S. Nakahara, “Stepping closer to the perfect 3D digital image,” SPIE Newsroom, 2012, https://spie.org/news/4526-stepping-closer-to-the-perfect-3d-digital-image?SSO=1.
[Crossref]
W. Nishii and K. Matsushima, “A wavefront printer using phase-only spatial light modulator for producing computer-generated volume holograms,” Proc. SPIE 9006, 90061F (2014).
[Crossref]
Y. Ichihashi, K. Yamamoto, K. Wakunami, R. Oi, M. Okui, and T. Senoh, “An analysis of printing conditions for wavefront overlapping printing,” Proc. SPIE 10127, 101270L (2017).
[Crossref]
K. Wakunami, R. Oi, T. Senoh, H. Sasaki, Y. Ichihashi, and K. Yamamoto, “Wavefront printing technique with overlapping approach toward high definition holographic image reconstruction,” Proc. SPIE 9867, 98670J (2016).
[Crossref]
Y. Ichihashi, K. Yamamoto, K. Wakunami, R. Oi, M. Okui, and T. Senoh, “An analysis of printing conditions for wavefront overlapping printing,” Proc. SPIE 10127, 101270L (2017).
[Crossref]
Y. Kim, E. Stoykova, H. Kang, S. Hong, J. Park, J. Park, and J. Hong, “Seamless full color holographic printing method based on spatial partitioning of SLM,” Opt. Express 23, 172–182 (2015).
[Crossref]
Y. Kim, E. Stoykova, H. Kang, S. Hong, J. Park, J. Park, and J. Hong, “Seamless full color holographic printing method based on spatial partitioning of SLM,” Opt. Express 23, 172–182 (2015).
[Crossref]
K. Wakunami, R. Oi, T. Senoh, H. Sasaki, Y. Ichihashi, and K. Yamamoto, “Wavefront printing technique with overlapping approach toward high definition holographic image reconstruction,” Proc. SPIE 9867, 98670J (2016).
[Crossref]
G. Saxby and S. Zacharovas, Practical Holography, 4th ed. (CRC Press, 2016), Chap. 4.
Y. Ichihashi, K. Yamamoto, K. Wakunami, R. Oi, M. Okui, and T. Senoh, “An analysis of printing conditions for wavefront overlapping printing,” Proc. SPIE 10127, 101270L (2017).
[Crossref]
K. Wakunami, R. Oi, T. Senoh, H. Sasaki, Y. Ichihashi, and K. Yamamoto, “Wavefront printing technique with overlapping approach toward high definition holographic image reconstruction,” Proc. SPIE 9867, 98670J (2016).
[Crossref]
Y. Shi, H. Wang, and Q. Wu, “Color evaluation of computer-generated color rainbow holography,” J. Opt. 15, 025701 (2013).
[Crossref]
Y. Shi, H. Wang, Y. Li, H. Jin, and L. Ma, “Practical method for color computer-generated rainbow holograms of real-existing objects,” Appl. Opt. 48, 4219–4226 (2009).
[Crossref]
W. Freese, T. Kämpfe, W. Rockstroh, E.-B. Kley, and A. Tünnermann, “Optimized electron beam writing strategy for fabricating computer-generated holograms based on an effective medium approach,” Opt. Express 19, 8684–8692 (2011).
[Crossref]
T. Kämpfe, E. Kley, A. Tünnermann, and P. Dannberg, “Design and fabrication of stacked, computer generated holograms for multicolor image generation,” Appl. Opt. 46, 5482–5488 (2007).
[Crossref]
Y. Ichihashi, K. Yamamoto, K. Wakunami, R. Oi, M. Okui, and T. Senoh, “An analysis of printing conditions for wavefront overlapping printing,” Proc. SPIE 10127, 101270L (2017).
[Crossref]
K. Wakunami, R. Oi, T. Senoh, H. Sasaki, Y. Ichihashi, and K. Yamamoto, “Wavefront printing technique with overlapping approach toward high definition holographic image reconstruction,” Proc. SPIE 9867, 98670J (2016).
[Crossref]
X. Yang, H. Wang, Y. Li, F. Xu, J. H. Zhang, and H. Zhang, “Large scale and high resolution computer generated synthetic color rainbow hologram,” J. Opt. 21, 025601 (2019).
[Crossref]
X. Yang, H. Wang, Y. Li, F. Xu, J. H. Zhang, and H. Zhang, “Large scale and high resolution color Fresnel holographic 3D display using RGB LED illumination,” Proc. SPIE 10964, 109642G (2018).
[Crossref]
Y. Shi, H. Wang, and Q. Wu, “Color evaluation of computer-generated color rainbow holography,” J. Opt. 15, 025701 (2013).
[Crossref]
Y. Shi, H. Wang, Y. Li, H. Jin, and L. Ma, “Practical method for color computer-generated rainbow holograms of real-existing objects,” Appl. Opt. 48, 4219–4226 (2009).
[Crossref]
Y. Shi, H. Wang, and Q. Wu, “Color evaluation of computer-generated color rainbow holography,” J. Opt. 15, 025701 (2013).
[Crossref]
X. Yang, H. Wang, Y. Li, F. Xu, J. H. Zhang, and H. Zhang, “Large scale and high resolution computer generated synthetic color rainbow hologram,” J. Opt. 21, 025601 (2019).
[Crossref]
X. Yang, H. Wang, Y. Li, F. Xu, J. H. Zhang, and H. Zhang, “Large scale and high resolution color Fresnel holographic 3D display using RGB LED illumination,” Proc. SPIE 10964, 109642G (2018).
[Crossref]
Y. Ichihashi, K. Yamamoto, K. Wakunami, R. Oi, M. Okui, and T. Senoh, “An analysis of printing conditions for wavefront overlapping printing,” Proc. SPIE 10127, 101270L (2017).
[Crossref]
K. Wakunami, R. Oi, T. Senoh, H. Sasaki, Y. Ichihashi, and K. Yamamoto, “Wavefront printing technique with overlapping approach toward high definition holographic image reconstruction,” Proc. SPIE 9867, 98670J (2016).
[Crossref]
X. Yang, H. Wang, Y. Li, F. Xu, J. H. Zhang, and H. Zhang, “Large scale and high resolution computer generated synthetic color rainbow hologram,” J. Opt. 21, 025601 (2019).
[Crossref]
X. Yang, H. Wang, Y. Li, F. Xu, J. H. Zhang, and H. Zhang, “Large scale and high resolution color Fresnel holographic 3D display using RGB LED illumination,” Proc. SPIE 10964, 109642G (2018).
[Crossref]
G. Saxby and S. Zacharovas, Practical Holography, 4th ed. (CRC Press, 2016), Chap. 4.
X. Yang, H. Wang, Y. Li, F. Xu, J. H. Zhang, and H. Zhang, “Large scale and high resolution computer generated synthetic color rainbow hologram,” J. Opt. 21, 025601 (2019).
[Crossref]
X. Yang, H. Wang, Y. Li, F. Xu, J. H. Zhang, and H. Zhang, “Large scale and high resolution color Fresnel holographic 3D display using RGB LED illumination,” Proc. SPIE 10964, 109642G (2018).
[Crossref]
X. Yang, H. Wang, Y. Li, F. Xu, J. H. Zhang, and H. Zhang, “Large scale and high resolution computer generated synthetic color rainbow hologram,” J. Opt. 21, 025601 (2019).
[Crossref]
X. Yang, H. Wang, Y. Li, F. Xu, J. H. Zhang, and H. Zhang, “Large scale and high resolution color Fresnel holographic 3D display using RGB LED illumination,” Proc. SPIE 10964, 109642G (2018).
[Crossref]
H. I. Bjelkhagen and E. Mirlis, “Color holography to produce highly realistic three-dimensional images,” Appl. Opt. 47, A123–A133 (2008).
[Crossref]
F. Yang, Y. Murakami, and M. Yamaguchi, “Digital color management in full-color holographic three-dimensional printer,” Appl. Opt. 51, 4343–4352 (2012).
[Crossref]
Y. Shi, H. Wang, Y. Li, H. Jin, and L. Ma, “Practical method for color computer-generated rainbow holograms of real-existing objects,” Appl. Opt. 48, 4219–4226 (2009).
[Crossref]
K. Matsushima, “Computer-generated holograms for three-dimensional surface objects with shade and texture,” Appl. Opt. 44, 4607–4614 (2005).
[Crossref]
K. Matsushima and S. Nakahara, “Extremely high-definition full-parallax computer-generated hologram created by the polygon-based method,” Appl. Opt. 48, H54–H63 (2009).
[Crossref]
K. Matsushima, Y. Arima, and S. Nakahara, “Digitized holography: modern holography for 3D imaging of virtual and real objects,” Appl. Opt. 50, H278–H284 (2011).
[Crossref]
H. Nishi and K. Matsushima, “Rendering of specular curved objects in polygon-based computer holography,” Appl. Opt. 56, F37–F44 (2017).
[Crossref]
K. Matsushima and N. Sonobe, “Full-color digitized holography for large-scale holographic 3D imaging of physical and nonphysical objects,” Appl. Opt. 57, A150–A156 (2018).
[Crossref]
T. Kämpfe, E. Kley, A. Tünnermann, and P. Dannberg, “Design and fabrication of stacked, computer generated holograms for multicolor image generation,” Appl. Opt. 46, 5482–5488 (2007).
[Crossref]
K. Matsushima, H. Nishi, and S. Nakahara, “Simple wave-field rendering for photorealistic reconstruction in polygon-based high-definition computer holography,” J. Electron. Imaging 21, 023002 (2012).
[Crossref]
Y. Shi, H. Wang, and Q. Wu, “Color evaluation of computer-generated color rainbow holography,” J. Opt. 15, 025701 (2013).
[Crossref]
X. Yang, H. Wang, Y. Li, F. Xu, J. H. Zhang, and H. Zhang, “Large scale and high resolution computer generated synthetic color rainbow hologram,” J. Opt. 21, 025601 (2019).
[Crossref]
T. Yamaguchi, O. Miyamoto, and H. Yoshikawa, “Volume hologram printer to record the wavefront of three-dimensional objects,” Opt. Eng. 51, 075802 (2012).
[Crossref]
W. Freese, T. Kämpfe, W. Rockstroh, E.-B. Kley, and A. Tünnermann, “Optimized electron beam writing strategy for fabricating computer-generated holograms based on an effective medium approach,” Opt. Express 19, 8684–8692 (2011).
[Crossref]
M. Makowski, M. Sypek, and A. Kolodziejczyk, “Colorful reconstructions from a thin multi-plane phase hologram,” Opt. Express 16, 11618–11623 (2008).
[Crossref]
K. Matsushima, M. Nakamura, and S. Nakahara, “Silhouette method for hidden surface removal in computer holography and its acceleration using the switch-back technique,” Opt. Express 22, 24450–24465 (2014).
[Crossref]
Y. Kim, E. Stoykova, H. Kang, S. Hong, J. Park, J. Park, and J. Hong, “Seamless full color holographic printing method based on spatial partitioning of SLM,” Opt. Express 23, 172–182 (2015).
[Crossref]
Y. Tsuchiyama and K. Matsushima, “Full-color large-scaled computer-generated holograms using RGB color filters,” Opt. Express 25, 2016–2030 (2017).
[Crossref]
K. Matsushima and T. Shimobaba, “Band-limited angular spectrum method for numerical simulation of free-space propagation in far and near fields,” Opt. Express 17, 19662–19673 (2009).
[Crossref]
N. S. Merzlyakov and M. G. Mozerov, “Computer-generated true-color rainbow holograms,” Opt. Laser Eng. 29, 369–376 (1998).
[Crossref]
X. Yang, H. Wang, Y. Li, F. Xu, J. H. Zhang, and H. Zhang, “Large scale and high resolution color Fresnel holographic 3D display using RGB LED illumination,” Proc. SPIE 10964, 109642G (2018).
[Crossref]
K. Wakunami, R. Oi, T. Senoh, H. Sasaki, Y. Ichihashi, and K. Yamamoto, “Wavefront printing technique with overlapping approach toward high definition holographic image reconstruction,” Proc. SPIE 9867, 98670J (2016).
[Crossref]
Y. Ichihashi, K. Yamamoto, K. Wakunami, R. Oi, M. Okui, and T. Senoh, “An analysis of printing conditions for wavefront overlapping printing,” Proc. SPIE 10127, 101270L (2017).
[Crossref]
W. Nishii and K. Matsushima, “A wavefront printer using phase-only spatial light modulator for producing computer-generated volume holograms,” Proc. SPIE 9006, 90061F (2014).
[Crossref]
O. Kunieda and K. Matsushima, “Large-scale full-color computer-generated display holograms created by stacking transferred volume holograms,” Proc. SPIE 11062, 1106203 (2019).
[Crossref]
T. Miyaoka, K. Matsushima, and S. Nakahara, “Optimization of design-wavelength for unobtrusive chromatic aberration in high-definition color computer holography,” Proc. SPIE. 9386, 93860N (2015).
[Crossref]
G. Saxby and S. Zacharovas, Practical Holography, 4th ed. (CRC Press, 2016), Chap. 4.
H. I. Bjelkhagen and D. Brotherton-Ratcliffe, Ultra-Realistic Imaging (CRC Press, 2013), Chap. 7.
K. Matsushima and S. Nakahara, “Stepping closer to the perfect 3D digital image,” SPIE Newsroom, 2012, https://spie.org/news/4526-stepping-closer-to-the-perfect-3d-digital-image?SSO=1.
[Crossref]