Acta Optica Sinica, Volume. 42, Issue 7, 0723001(2022)
Field-of-View Expansion of Waveguide Display System with Double-Layer Volume Grating
[1] Borisov V N, Okun R A, Angervaks A E et al. Wide field of view HOE-based waveguides system for AR display[J]. Proceedings of SPIE, 11350, 113500E(2020).
[2] Aye T M, Yu K, Tengara I et al. Compact HMD optics based on multiplexed aberration-compensated holographic optical elements[J]. Proceedings of SPIE, 4361, 89-97(2001).
[3] Zeng F, Zhang X. Waveguide holographic head-mounted display technology[J]. Chinese Optics, 7, 731-738(2014).
[4] Cao C, Liao S, Liao Z Y et al. Design of off-axis reflective optical system with large field-of-view based on freeform surfaces[J]. Acta Optica Sinica, 40, 1122001(2020).
[5] Zheng Z Z, Yang Z, Xiu L C. Development and application ofshortwave infrared convex blazed grating with high diffraction efficiency[J]. Acta Optica Sinica, 40, 1205002(2020).
[6] Weng Y S, Zhang Y N, Cui J Y et al. Liquid-crystal-based polarization volume grating applied for full-color waveguide displays[J]. Optics Letters, 43, 5773-5776(2018).
[7] Lu T T, Feng Q B, Wang Z et al. Design and fabrication of volume holographic gratings with large angular bandwidth and high diffraction efficiency[J]. Acta Optica Sinica, 41, 0205001(2021).
[8] Blanche P A, Gailly P. Habraken S L M, et al. Volume phase holographic gratings: large size and high diffraction efficiency[J]. Optical Engineering, 43, 2603-2612(2004).
[9] Tao S Q, Jiang Z Q, Wan Y H et al[M]. Optical holography technology and its application(2013).
[10] Wu Y, Chen C P, Zhou L et al. Design of see-through near-eye display for presbyopia[J]. Optics Express, 25, 8937-8949(2017).
[11] Han J, Liu J, Yao X et al. Portable waveguide display system with a large field of view by integrating freeform elements and volume holograms[J]. Optics Express, 23, 3534-3549(2015).
[12] Shi X, Liu J, Xiao J et al. Design of a compact waveguide eyeglass with high efficiency by joining freeform surfaces and volume holographic gratings[J]. Journal of the Optical Society of America A, 38, A19-A26(2021).
[13] Liu A, Zhang Y N, Shen Z W et al. Realization and optimization of holographic waveguide display system[J]. Acta Optica Sinica, 37, 0523003(2017).
[14] Kogelnik H. Coupled wave theory for thick hologram gratings[J]. The Bell System Technical Journal, 48, 2909-2947(1969).
[15] Moharam M G, Gaylord T K. Rigorous coupled-wave analysis of planar-grating diffraction[J]. Journal of the Optical Society of America, 71, 811-818(1981).
[16] Moharam M G, Gaylord T K, Magnusson R. Criteria for Bragg regime diffraction by phase gratings[J]. Optics Communications, 32, 14-18(1980).
[17] Chateau N, Hugonin J P. Algorithm for the rigorous coupled-wave analysis of grating diffraction[J]. Journal of the Optical Society of America A, 11, 1321-1331(1994).
[18] Liu W C, Jin G, Xie Y F et al. Broadband high-efficiency polarization-independent double-layer slanted grating for RGB colors[J]. Optics Communications, 488, 126864(2021).
[19] Yin K, He Z Q, Li K et al. Doubling the FOV of AR displays with a liquid crystal polarization-dependent combiner[J]. Optics Express, 29, 11512-11519(2021).
[20] Shen Z W, Weng Y S, Zhang Y N et al. Holographic recording performance of acrylate-based photopolymer under different preparation conditions for waveguide display[J]. Polymers, 13, 936(2021).
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Chuang Wang, Zhongwen Shen, Yishi Weng, Yuning Zhang, Baoping Wang. Field-of-View Expansion of Waveguide Display System with Double-Layer Volume Grating[J]. Acta Optica Sinica, 2022, 42(7): 0723001
Category: Optical Devices
Received: Sep. 8, 2021
Accepted: Oct. 25, 2021
Published Online: Mar. 28, 2022
The Author Email: Zhang Yuning (zyn@seu.edu.cn)