Optoelectronic Technology, Volume. 42, Issue 2, 119(2022)

Design and Fabrication of Volume Holographic Grating in Planar Waveguide System

Qibin FENG1, Liye XU2, Le ZHANG3, Biao ZHU4, Ye YUAN4, Xinjun YANG4, and Guoqiang LYU3
Author Affiliations
  • 1Academy of Photoelectric Technology, Hefei University of Technology, Hefei 230009, CHN
  • 2School of Physics, Hefei University of Technology, Hefei 30009, CHN
  • 3School of Instrumentation and Opto‑electronics Engineering, Hefei University of Technology, Hefei 20009, CHN
  • 4AVIC Hua Dong Photoelectric Co. , Ltd. , Wuhu Anhui 21002, CHN
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    References(14)

    [1] Chang Chenliang, Bang Kiseung, Gordon Wetzstein et al. Toward the next-generation VR/AR optics: A review of holographic near-eye displays from a human-centric perspective[J]. Optica, 7, 1563-1578(2020).

    [2] Maimone A, Georgiou A, Kollin J S. Holographic near-eye displays for virtual and augmented reality[J]. ACM Transactions on Graphics, 36, 1-16(2017).

    [3] Wu Z, Liu J, Wang Y. A high-efficiency holographic waveguide display system with a prism in-coupler[J]. Journal of the Society for Information Display, 21, 524-528(2013).

    [4] Cao C, Liao S, Liao Z Y et al. Design of large field off-axis reflection optical system based on free-form surface[J]. Acta Optica Sinica, 40, -0808007(2020).

    [5] Zheng Z Z, Yang Z, Xiu L C et al. Development and application of high diffraction efficiency short-wave infrared convex shining grating[J]. Acta Optica Sinica, 40, 1205002-1205010(2020).

    [6] Amitai Y, Friesem A A, Weiss V. Holographic elements with high efficiency and low aberrations for helmet displays[J]. Applied Optics, 28, 3405-3416(1986).

    [7] Murakami E, Oguro Y, Sakamoto Y. Study on compact head-mounted display system using electro-holography for augmented reality[J]. IEICE Transactions on Electronics, 100, 965-971(2017).

    [8] Duan X, Liu J, Shi X et al. Full-color see-through near-eye holographic display with 80° field of view and an expanded eye-box[J]. Optics Express, 28, 31316-31329(2020).

    [9] Shi R, Liu J, Zhao H et al. Chromatic dispersion correction in planar waveguide using one-layer volume holograms based on three-step exposure[J]. Applied Optics, 51, 4703-4708(2012).

    [10] 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).

    [11] Mukawa H, Akutsu K, Matsumura I et al. A full-color eyewear display using planar waveguides with reflection volume holograms[J]. Journal of the Society for Information Display, 17, 185-193(2009).

    [12] Piao M L, Kim N. Achieving high levels of color uniformity and optical efficiency for a wedge-shaped waveguide head-mounted display using a photopolymer[J]. Applied Optics, 53, 2180-2186(2014).

    [13] Kogelnik H[M]. Coupled wave theory for thick hologram gratings, 133-171(1995).

    [14] Guo J, Tu Y, Yang L et al. Holographic waveguide display with a combined- grating in-coupler[J]. Applied Optics, 55, 9293-9298(2016).

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    Qibin FENG, Liye XU, Le ZHANG, Biao ZHU, Ye YUAN, Xinjun YANG, Guoqiang LYU. Design and Fabrication of Volume Holographic Grating in Planar Waveguide System[J]. Optoelectronic Technology, 2022, 42(2): 119

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    Paper Information

    Category: Research and Trial-manufacture

    Received: Aug. 30, 2021

    Accepted: --

    Published Online: Jul. 29, 2022

    The Author Email:

    DOI:10.19453/j.cnki.1005-488x.2022.02.007

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