J. Eur. Opt. Society-Rapid Publ. 22, 22( 2026) 231
Workshops 29, 379 – 382( 2022). https:// doi. org / 10.36463 / idw. 2022.0379.
56 Zhao BC, Huang RY, Lv GJ, Retro-reflection based projection 3D display with low crosstalk, Optik 226, 165691( 2021). https:// doi. org / 10.1016 / j. ijleo. 2020.165691.
57 Ochiai Y, Kumagai K, Hoshi T, et al., Fairy Lights in femtoseconds: Aerial and volumetric graphics rendered by focused femtosecond laser combined with computational 3D fields, ACM Trans. Graph. 35, 17( 2016). https:// doi. org / 10.1145 / 2850414.
58 Gibney E, Star Wars-style 3D images created from single speck of foam, Nature 575, 272 – 273( 2019). https:// doi. org / 10.1038 / d41586-019-03454-y.
59 Hirayama R, Martinez Plasencia D, Masuda N, et al., A volumetric display for visual, tactile and audio presentation using acoustic trapping, Nature 575, 320 – 323( 2019). https:// doi. org / 10.1038 / s41586-019-1739-5.
60 Zong Q, Wu JY, Chou PY, et al., Revelation and addressing of accommodation shifts in microlens array-based 3D neareye light field displays, Opt. Lett. 45, 228 – 231( 2020). https:// doi. org / 10.1364 / OL. 45.000228.
61 Liu L, Cai J, Pang Z, Teng D, Super multi-view near-eye 3D display with enlarged field of view, Opt. Eng. 60, 085103( 2021). https:// doi. org / 10.1117 / 1. OE. 60.8.085103.
62 Liu B, Sang X, Yu X, et al., Multi-rays computational floating light-field display based on holographic functional screen, Optik 172, 406 – 411( 2018). https:// doi. org / 10.1016 / j. ijleo. 2018.07.006.
63 Liu Z, Heredia Conde M, Evaluation and compensation of the effect of dirt on time-of-flight 3d imaging systems, IEEE Sens. J. 22, 16595 – 16606( 2022). https:// doi. org / 10.1109 / JSEN. 2022.3189773.
64 Watanabe H, Omura T, Okaichi N, Kano M, Sasaki H, Arai J, Full-parallax three-dimensional display based on light field reproduction, Opt. Rev. 29, 366 – 374( 2022). https:// doi. org / 10.1007 / s10043-022-00752-1.
65 Zhao CB, Liu YJ, Huang YY, Zhang XT, Xing Y, Wang QH, Photonics breakthroughs 2024: Large-viewing-angle light field 3D display based on high-precision beam directionality, IEEE Photon. J. 17, 5200107( 2025). https:// doi. org / 10.1109 / JPHOT. 2025.3551384.
66 Chlubna T, Milet T, Zemčík P, How capturing camera trajectory distortion affects user experience on looking glass 3D display, Multimed. Tools Appl. 83, 20265 – 20287( 2024). https:// doi. org / 10.1007 / s11042-023-16350-5.
67 Chlubna T, Milet T, Zemčík P, Automatic 3D-displayfriendly scene extraction from video sequences and optimal focusing distance identification, Multimed. Tools Appl. 83, 74535 – 74562( 2024). https:// doi. org / 10.1007 / s11042-024- 18573-6.
68 Song S, Lin HY, Shi WJ, et al., Small yellow-green Nd: YAG / PPMgLN laser module at 561.3 nm, Optik 232, 166557( 2021). https:// doi. org / 10.1016 / j. ijleo. 2021.166557.
69 Yang T, Wang Y, Xin L, et al., Design of imaging and display systems combining freeform optics and holographic optical elements, Acta Opt. Sin. 44, 0900001( 2024). https:// doi. org / 10.3788 / AOS231830.
70 Gao C, Li Z, Wu R, et al., Development and prospect of portable three-dimensional displays, Laser Optoelectron. Prog. 60, 0811009( 2023). https:// doi. org / 10.3788 / LOP230459.
71 Liu X, Zhai RX, Geng ST, et al., Design and application of laser-engraved carbon quantum dots rewritable fluorescent paper in modern exhibitions and shows, Phys. Status Solidi RRL. 19, e202500314( 2025). https:// doi. org / 10.1002 / pssr. 202500314.
72 Xing F, Shi Z, Chang H, et al., Holographic stereogram: From printing to computing, Laser Optoelectron. Prog. 61, 0211006( 2024). https:// doi. org / 10.3788 / LOP232267.
73 Zhou C, Li J, The Development of aesthetic experience through virtual and augmented reality, Sci. Rep. 14, 4290( 2024). https:// doi. org / 10.1038 / s41598-024-53840-4.
74 Ahmedien DAM, A drop of light: An interactive new media art investigation of human-technology symbiosis, Humanit. Soc. Sci. Commun. 11, 721( 2024). https:// doi. org / 10.1057 / s41599-024-03206-y.
75 Dai H, Chen Y, Wang M, et al., Design of multichannel tactile feedback digital glove for virtual reality, IEEE Sens. Lett. 8, 6001704( 2024). https:// doi. org / 10.1109 / LSENS. 2024.3358260.
76 Zhan T, Yin K, Xiong J, et al., Augmented reality and virtual reality displays: Perspectives and challenges, iScience 23, 101397( 2020). https:// doi. org / 10.1016 / j. isci. 2020.101397.