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Research Article

Directional modulated light-emitting technology based on airborne display

, , , , , , , & show all
Pages 2146-2154 | Received 15 Jul 2022, Accepted 01 Aug 2022, Published online: 10 Aug 2022

References

  • Poisson RJ, Miller ME. Spatial disorientation mishap trends in the U.S. Air force 1993-2013. Aviat Space Environ Med. 2014;85(9):919–924.
  • Huang Y, Hsiang EL, Deng MY, et al. Mini-LED, micro-LED and OLED displays: present status and future perspectives. Light-Sci Appl. 2020;9(1):105–120. DOI:10.1038/s41377-020-0341-9
  • Chen HW, Lee JH, Lin BY, et al. Liquid crystal display and organic light-emitting diode display: present status and future perspectives. Light-SCI Appl. 2018;7(3):17168–17180. DOI:10.1038/lsa.2017.168
  • Dou H, Chen M, Li D, et al. A controllable viewing angle optical film using micro prisms filled with liquid crystal. Liq Cryst. 2021;48(10):1373–1381. DOI:10.1080/02678292.2021.1873439
  • Lu R, Wu ST, Lee SH. Reducing the color shift of a multidomain vertical alignment liquid crystal display using dual threshold voltages. Appl Phys Lett. 2008;92(5):051114.
  • Lu R, Qi H, Ge Z, et al. Color shift reduction of a multi-domain IPS-LCD using RGB-LED backlight. Opt Express. 2006;14(13):6243–6252. DOI:10.1364/OE.14.006243
  • Schadt M, Seiberle H, Schuster A. Optical patterning of multi-domain liquid-crystal displays with wide viewing angles. Nature. 1996;381(6579):212–215.
  • Park JH, Oh SW, Huh JW, et al. Four-domain electrode structure for wide viewing angle in a fringe-field-switching liquid crystal display. J Disp Technol. 2016;12(7):667–672. DOI:10.1109/JDT.2016.2521398
  • Guo YQ, Li XS, Sun Y, et al. Low gamma shift blue-phase liquid crystal display with electric filed induced multi-domain electrode structure. Liq Cryst. 2020;47(1):54–66. DOI:10.1080/02678292.2019.1627434
  • Lim YJ, Kim JH, Her JH, et al. Viewing angle switching of liquid crystal display using fringe-field switching to control off-axis phase retardation. J Phys D Appl Phys. 2010;43(8):85501–85506. DOI:10.1088/0022-3727/43/8/085501
  • Jo SI, Lee SG, Lee YJ, et al. Viewing angle controllable liquid crystal display under optical compensation. Opt Eng. 2011;50(9):094003. DOI:10.1117/1.3622761
  • Oh SW, Yoon TH. Achromatic wide-view circular polarizers for a high-transmittance vertically-aligned liquid crystal cell. Opt Lett. 2014;39(16):4683–4686.
  • Mori H. The wide view (WV) film for enhancing the field of view of LCDs. J Disp Technol. 2005;1(2):179–186.
  • Mori H, Itoh Y, Nishiura Y, et al. Performance of a novel optical compensation film based on negative birefringence of discotic compound for wide-viewing-angle twisted-nematic liquid-crystal displays. Jpn J Appl Phys. 1997;36:143–147.
  • Saitoh Y, Kimura S, Kusafuka K, et al. Optimum film compensation of viewing angle of contrast in in-plane-switching-mode liquid crystal display. Jpn J Appl Phys. 1998;37:4822–4828.
  • Oh SW, Yoon TH. Elimination of light leakage over the entire viewing cone in a homogeneously-aligned liquid crystal cell. Opt Express. 2014;22(5):5808–5817.
  • Oikawa T, Yasuda S, Takeuchi K, et al. Novel WV film for wide-viewing-angle TN-mode LCDs. J Soc Inf Disp. 2012;15(2):133–137. DOI:10.1889/1.2709733
  • Guo Y, Li X, Yang Y, et al. Low-Gamma shift asymmetrical double-side blue-phase liquid crystal display. Liq Cryst. 2020;47(2):199–210. DOI:10.1080/02678292.2019.1635719
  • Liu Y, Lan YF, Hong Q, et al. Compensation film designs for high contrast wide-view blue phase liquid crystal displays. J Disp Technol. 2013;10(1):3–6. DOI:10.1109/JDT.2013.2292051
  • Zhang JB, Qian KY. Designing single LED illumination distribution for direct-type backlight. Appl Optics. 2013;52(28):7022–7027.
  • Kim B, Kim J, Ohm WS, et al. Eliminating hotspots in a multi-chip LED array direct backlight system with optimal patterned reflectors for uniform illuminance and minimal system thickness. Opt Express. 2010;18(8):8595–8604. DOI:10.1364/OE.18.008595
  • Sekiguchi Y, Konno A, Tsumura M. Design method for a thin uniform direct backlight using a diffuser plate with a pattern on the surface and optical film. Appl Opt. 2015;54(54):482–491.
  • Feng Q, Qigong LV, Wang Y, et al. The design and optimization of lens array for LED backlight in LCD imaging engine of helmet-mounted display. J Sco Inf Display. 2017;25(5):312–319. DOI:10.1002/jsid.553
  • He Z, Yin K, Hsiang EL, et al. Volumetric light-shaping polymer-dispersed liquid crystal films for mini-led backlights. Liq Cryst. 2020;47(10):1458–1463. DOI:10.1080/02678292.2020.1735546
  • Dou H, Wang L, Ren G, et al. A light-mixing liquid crystal lens-like cell to decrease color shift and tune brightness for displays. Crystals. 2022;12(2):213–223. DOI:10.3390/cryst12020213
  • Tian LL, Chu F, Duan R, et al. Beam steering device based on blue phase liquid crystal. Opt Commun. 2020;481:126525.
  • Dou H, Chu F, Guo YQ, et al. Large aperture liquid crystal lens array using a composited alignment layer. Opt Express. 2018;26(7):9254–9262. DOI:10.1364/OE.26.009254
  • Chu F, Guo YQ, Zhang YX, et al. Four-mode 2D/3D switchable display with a 1D/2D convertible liquid crystal lens array. Opt Express. 2021;29(23):37464–37475. DOI:10.1364/OE.441386
  • Zou J, Zhan T, Hsiang EL, et al. Doubling the optical efficiency of VR systems with a directional backlight and a diffractive deflection film. Opt Express. 2021;29(13):20673–20686. DOI:10.1364/OE.430920
  • Gao Y, Luo Z, Zhu R, et al. A high performance single-domain LCD with wide luminance distribution. J Disp Technol. 2015;11(4):315–324. DOI:10.1109/JDT.2015.2408993

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