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Strategic Study of CAE >> 2020, Volume 22, Issue 3 doi: 10.15302/J-SSCAE-2020.03.013

Present Development and Tendency of Laser Display Technology

Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China

Funding project:CAE Advisory Project “Strategic Research on China’s Laser Technology and Its Application by 2035” (2018-XZ-27) Received: 2020-03-26 Revised: 2020-04-20

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Abstract

Display device is the terminal of information display in interactions between human and machine and is expanding to all aspects of people’s lives in the information age. Nowadays, all display technologies are developing toward high-fidelity images with ultra-high resolution, large screen, and true color, to satisfy people’s needs for perfect visual senses. Laser display technology uses tricolor laser as the display light source and can realize the reproduction of high-fidelity images with dual high definition (geometry/color), large color gamut, and high viewing comfort, which approaches the limit of human vison. Laser display is thus regarded as one of the significant directions for transformation and upgrading of the display industry. In this study, the technical and industrial characteristics of the laser display technology are analyzed in details based on the requirements of the industry for independent, controllable, and safe development. The current development situation, development trend, and key problems are summarized in the laser display industry. The development roadmap of China’s laser display industry is proposed. China should make more effects in breakthroughs of key technologies to grow its laser display industry in an independent and controllable manner. It also should support the high-end market of the next-generation display industry and build industrial clusters for laser display.

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References

[ 1 ] Kishore V C, Erdem E, Hakan U. Laser-based displays: A review [J]. Applied Optics, 2010, 49(25): F79. link1

[ 2 ] Xu Z Y. Optoelectronic crystals, all-solid-state lasers and their applications——An Important course of optoelectronics R &D [J]. Strategic Study of CAE, 1999, 1(2): 72–77. Chinese. link1

[ 3 ] Jing Q C, Jiao S L, Yu B L, et al. Chromaticity [M]. Beijing: China Science Publishing & Media Ltd., 1979. Chinese.

[ 4 ] Bi Y. The full color laser display [J]. Advanced Material Industry, 2009 (4): 76–71. Chinese. link1

[ 5 ] Xu Z Y. Large color gamut display——The new generation of display technique [J]. Physics, 2010, 39(4): 227–231. Chinese. link1

[ 6 ] Xu Z Y. Laser displays—— New display technology for next generation [J]. Laser & Infrared, 2006, 36(B09): 737–741. Chinese. link1

[ 7 ] Xu Z Y, Bi Y, Zhang W P. Laser displays: Developing trend of Chinese new display technology [J]. Electronic Science & Technology, 2019 (1): 53–61. Chinese.

[ 8 ] International Telecommunication Union. R12-SG06 BT.2020-2- 2015 Recommendation parameter values of program production and international exchange in UHD TV system [S]. Geneva: International Telecommunication Union, 2017: 2. Chinese.

[ 9 ] Yuan Y, Fang T, Sun M Y, et al. Speckle measuring instrument based on biological characteristics of the human eyes and speckle reduction with advanced electromagnetic micro-scanning mirror [J]. Laser Physics, 2018, 28(7): 5002–5007. link1

[10] Yuan Y, Wang D Z, Zhou B J, et al. High luminous fluorescence generation using Ce:YAG transparent ceramic excited by blue laser diode [J]. Optical Materials Express, 2018, 8(9): 2760–2767. link1

[11] Wang D Z, Yan B X, Bi Y, et al. Three-wavelength green laser using intracavity frequency conversion of Nd:Mg:LiTaO3 with a MgO:PPLN crystal [J]. Applied Physics B, 2014 (117):1117–1121. link1

[12] Wang D Z, Sun D H, Kang X L, et al. Periodically poled self-frequency-doubling green laser fabricated from Nd:Mg:LiNbO3 single crystal [J]. Optics Express, 2015, 23(14): 17727–17738. link1

[13] Yu D G. Engineering optics (fourth edition) [M]. Beijing: Mechanical Industry Press, 2016. Chinese.

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