J. Eur. Opt. Society-Rapid Publ. 22, 22( 2026) 229
Integration Pathways in Fujian Province”, and Fujian Provincial Social Science Planning Project( Grant No. FJ2023MGCA024, Key Program) entitled“ Dynamic mechanism and path of transformation and upgrading for Fujian convention and exhibition industry in the trend of immersive experience”.
Conflicts of interest The authors declare that there are no conflicts of interest.
Data availability statement
Data underlying the results presented in this paper are not publicly available at this time but may be obtained from the authors upon reasonable request.
Author contribution statement
Conceptualization, Xiao Liu and Hong-Yi Lin; methodology, Xiao Liu; validation, Run-Xuan Zhai and Hong-Yi Lin; formal analysis, Xiao Liu and Zi-Chen Zhang; investigation, Run-Xuan Zhai, and Hong-Yi Lin; resources, Run-Xuan Zhai; Liang-Qin Gan and Xiao Liu; writing – original draft preparation, Xiao Liu and Hong-Yi Lin; writing – review and editing, Xiao Liu and Hong-Yi Lin; visualization, Liang-Qin Gan and Hong-Yi Lin; supervision, Liang-Qin Gan and Xiao Liu; project administration, Xiao Liu; funding acquisition, Xiao Liu. All authors have read and agreed to the published version of the manuscript.
References
1 Huang ZF, Zhang Z, Li T, et al., Digital empowerment for the deep integration of culture and tourism: Theoretical logic and research framework, Tour. Sci. 38, 1 – 16( 2024). https:// lykx. sitsh. edu. cn / CN / Y2024 / V38 / I1 / 1.
2 Hua J, Chen QH, Immersive experience: A new business form of culture and technology, J. Shanghai Univ. Finance Econ. 21, 18 – 32( 2019). https:// doi. org / 10.16538 / j. cnki. jsufe. 2019.05.002.
3 Karnchanapayap G, Activities-based virtual reality experience for better audience engagement, Comput. Hum. Behav. 146, 107796( 2023). https:// doi. org / 10.1016 / j. chb. 2023. 107796.
4 Park J, Kang H, Huh C, Lee MJ, Do immersive displays influence exhibition attendees’ satisfaction?: A stimulusorganism-response approach, Sustainability 14, 6344( 2022). https:// doi. org / 10.3390 / su14106344.
5 Yao J, Wang L, Pang Q, Fang M, Coupling coordination and spatial analyses of the MICE and tourism industries: Do they fit well? Curr. Issues Tour. 27, 2783 – 2796( 2024). https:// doi. org / 10.1080 / 13683500.2023.2240473.
6 Trunfio M, Jung T, Campana S, Mixed reality experiences in museums: Exploring the impact of functional elements of the devices on visitors’ immersive experiences and post-experience behaviours, Inf. Manag. 59, 103698( 2022). https:// doi. org / 10.1016 / j. im. 2022.103698.
7 Liu X, Wen ZW, Song S, et al., Speckle-reduced green and yellow-green Nd: YVO 4( YAG)/ PPMgLN lasers for cinema exhibition industry, Optik 243, 167427( 2021). https:// doi. org / 10.1016 / j. ijleo. 2021.167427.
8 Liu X, Zeng XT, Shi WJ, et al., Application of a novel Nd: YAG / PPMgLN laser module speckle-suppressed by multimode fibers in an exhibition environment, Photonics 9, 46( 2022). https:// doi. org / 10.3390 / photonics9010046. 9 Houston J, Beck W, Design considerations for cinema exhibition using RGB laser illumination, SMPTE Motion Imaging J. 124, 26 – 41( 2015). https:// doi. org / 10.5594 / j18547.
10 Bruno F, Bruno S, De Sensi G, et al., From 3D reconstruction to virtual reality: A complete methodology for digital archaeological exhibition, J. Cult. Herit. 11, 42 – 49( 2010). https:// doi. org / 10.1016 / j. culher. 2009.02.006.
11 Pratisto EH, Thompson N, Potdar V, Immersive technologies for tourism: A systematic review, Inf. Technol. Tour. 24, 181 – 219( 2022). https:// doi. org / 10.1007 / s40558-022-00228-7.
12 Collin-Lachaud I, Passebois J, Do immersive technologies add value to the museum-going experience? An exploratory study conducted at France’ s Paleosite, Int. J. Arts Manag. 11, 60 – 71( 2018). https:// www. jstor. org / stable / 41064975.
13 Ku ECS, Embracing the future of interactive marketing with contactless technology: Evidence from tourism businesses, J. Res. Interact. Mark. 19, 1( 2024). https:// doi. org / 10.1108 / JRIM-04-2024-0183.
14 The Editors of Encyclopaedia Britannica, Interactive Media,( 2025). https:// www. britannica. com / technology / interactivemedia( accessed 2 February 2025).
15 Zimeng G, Wei Y, Qiuxia C, Xiaoting H, The contribution and interactive relationship of tourism industry development and technological innovation to the informatization level: Based on the context of low-carbon development, Front. Environ. Sci. 11, 999675( 2023). https:// doi. org / 10.3389 / fenvs. 2023.999675.
16 Hua J, Zhou F, Xia Z, et al., Large-scale metagrating complex-based light field 3D display with space-variant resolution for non-uniform distribution of information and energy, Nanophotonics 12, 285 – 295( 2023). https:// doi. org / 10.1515 / nanoph-2022-0637.
17 Khuderchuluun A, Erdenebat MU, Dashdavaa E, et al., Comprehensive optimization for full-color holographic stereogram printing system based on single-shot depth estimation and time-controlled exposure, Opt. Laser Technol. 181, 111966( 2025). https:// doi. org / 10.1016 / j. optlastec. 2024.111966.
18 Wang T, Yang C, Chen J, et al., Naked-eye light field display technology based on mini / micro light emitting diode panels: A systematic review and meta-analysis, Sci. Rep. 14, 24381( 2024). https:// doi. org / 10.1038 / s41598-024-75172-z.
19 Liu S, Li Y, Su Y, Recent progress in true 3D display technologies based on liquid crystal devices, Crystals 13, 1639( 2023). https:// doi. org / 10.3390 / cryst13121639.
20 Gao HY, Yao QX, Liu P, et al., Latest development of display technologies, Chin. Phys. B 25,( 2016). https:// doi. org / 10.1088 / 1674-1056 / 25 / 9 / 094203.
21 Hoffman DM, Girshick AR, Akeley K, Banks MS, Vergence – accommodation conflicts hinder visual performance and cause visual fatigue, J. Vision 8, 33( 2008). https:// doi. org / 10.1167 / 8.3.33.
22 Fattal D, Peng Z, Tran T, et al., A multi-directional backlight for a wide-angle, glasses-free three-dimensional display, Nature 495, 348 – 351( 2013). https:// doi. org / 10.1038 / nature11972.
23 Blackwell C, Can C, Khan J, et al., Volumetric 3D display in real space using a diffractive lens, fast projector, and polychromatic light source, Opt. Lett. 44, 4901 – 4904( 2019). https:// doi. org / 10.1364 / OL. 44.004901.