[1] Wang Q H[M]. 3D display technology and devices, 216-239(2011).
[2] Geng J. Three-dimensional display technologies[J]. Advances in Optics and Photonics, 5, 456-535(2013).
[3] Fang X Y, Yang H C, Yao W Z et al. High-dimensional orbital angular momentum-multiplexing nonlinear holography[J]. Advanced Photonics, 3, 015001(2021).
[4] Martínez-Corral M, Javidi B. Fundamentals of 3D imaging and displays: a tutorial on integral imaging, light-field, and plenoptic systems[J]. Advances in Optics and Photonics, 10, 512-566(2018).
[5] Chen F H, Qiu C F, Liu Z J. Investigation of autostereoscopic displays based on various display technologies[J]. Nanomaterials, 12, 429(2022).
[6] When D, Cadusch J, Meng J et al. Light field on a chip: metasurface-based multicolor holograms[J]. Advanced Photonics, 3, 024001(2021).
[7] Kim J, Seong J, Yang Y et al. Tunable metasurfaces toward versatile metalenses and metaholograms: a review[J]. Advanced Photonics, 4, 024001(2022).
[8] Xiao X, Javidi B, Martinez-Corral M et al. Advances in three-dimensional integral imaging: sensing, display, and applications[J]. Applied Optics, 52, 546-560(2013).
[9] Zhao Z F, Liu J, Zhang Z Q et al. Bionic-compound-eye structure for realizing a compact integral imaging 3D display in a cell phone with enhanced performance[J]. Optics Letters, 45, 1491-1494(2020).
[10] Li M, Piao Y, Deng L J. Spatial resolution of naked eye three-dimensional integral imaging display based on an LED screen[J]. Laser & Optoelectronics Progress, 57, 061004(2020).
[11] Gu J, Tao Y H, Wang Q H et al. An autostereoscopic 3D projector based on two parallax barrier plates[J]. Laser & Optoelectronics Progress, 46, 31-33(2009).
[12] Lee J H, Park J, Nam D et al. Optimal projector configuration design for a 300-Mpixel multi-projection 3D display[J]. Optics Express, 21, 26820-26835(2013).
[13] Fattal D, Peng Z, Tran T et al. A multi-directional backlight for a wide-angle, glasses-free three-dimensional display[J]. Nature, 495, 348-351(2013).
[14] Lanman D, Wetzstein G, Hirsch M et al. Polarization fields: dynamic light field display using multi-layer LCDs[J]. ACM Transactions on Graphics, 30, 1-10(2011).
[15] Qiao W, Zhou F B, Chen L S. Toward the application of mobile devices: the status and future of glasses-free 3D display[J]. Infrared and Laser Engineering, 49, 0303002(2020).
[16] Okaichi N, Miura M, Sasaki H et al. Continuous combination of viewing zones in an integral three-dimensional display using multiple projectors[J]. Optical Engineering, 57, 061611(2018).
[17] Chen Y, Sang X Z, Li Y H et al. Distributed real-time rendering for ultrahigh-resolution multiscreen 3D display[J]. Journal of the Society for Information Display, 30, 244-255(2022).
[18] Wu W, Wang S G, Zhong C et al. Integral imaging with full parallax based on a mini LED display unit[J]. IEEE Access, 7, 32030-32036(2019).
[19] Xing S J, Cao L C, Sang X Z et al. Overview of virtual stereo content generation technology for super multi-view light field[J]. Chinese Journal of Lasers, 48, 1509001(2021).
[20] Shen S, Xing S J, Sang X Z et al. Virtual stereo content rendering technology review for light-field display[J]. Displays, 76, 102320(2023).
[21] Xia Y P, Li S, Ren H et al. High-efficient rendering to generate an annular sector elemental image array for tabletop integral imaging three-dimensional display[J]. Journal of the Society for Information Display, 29, 632-641(2021).
[22] Wang J C, Suenaga H, Liao H E et al. Real-time computer-generated integral imaging and 3D image calibration for augmented reality surgical navigation[J]. Computerized Medical Imaging and Graphics, 40, 147-159(2015).
[23] Ma X M, Xing Y, Zheng J C et al. A real-time interactive rendering method for 360° tabletop integral imaging 3D display[J]. Journal of the Society for Information Display, 29, 679-688(2021).