HoloBeam: Paper-Thin Near-Eye Displays
Kaan Aksit, Yuta Itoh
Abstract
An emerging alternative to conventional Augmented Reality (AR) glasses designs, Beaming displays promise slim AR glasses free from challenging design trade-offs, including battery-related limits or computational budget-related issues. These beaming displays remove active components such as batteries and electronics from AR glasses and move them to a projector that projects images to a user from a distance (1–2 meters), where users wear only passive optical eyepieces. However, earlier implementations of these displays delivered poor resolutions (7 cycles per degree) without any optical focus cues and were introduced with a bulky form-factor eyepiece (thick). This paper introduces a new milestone for beaming displays, which we call HoloBeam. In this new design, a custom holographic projector populates a micro-volume located at some distance (1–2 meters) with multiple planes of images. Users view magnified copies of these images from this small volume with the help of an eyepiece that is either a Holographic Optical Element (HOE) or a set of lenses. Our HoloBeam prototypes demonstrate the thinnest AR glasses to date with submillimeter thickness (e.g., HOE film is onlythick). In addition, HoloBeam prototypes demonstrate near retinal resolutions (24 cycles per degree) with a 70 degrees-wide field of view.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext f90c0d17-c07c-4533-a50c-2c498b49703fBuilds on6
- High resolution étendue expansion for holographic displaysGrace Kuo, Laura Waller, Ren Ng, Andrew MaimoneSIGGRAPH 2020 · 83 citations
- ThinVR: Heterogeneous microlens arrays for compact, 180 degree FOV VR near-eye displaysJoshua Ratcliff, Alexey Supikov, Santiago Alfaro, Ronald T. AzumaIEEE VR 2020 · 63 citations
- Holographic Glasses for Virtual RealityJonghyun Kim, Manu Gopakumar, Suyeon Choi, Yifan Peng et al.SIGGRAPH 2022 · 54 citations
- Video See-Through Mixed Reality with Focus CuesChristoph Ebner, Shohei Mori, Peter Mohr, Yifan Peng et al.IEEE VR 2022 · 24 citations
- Realistic Defocus Blur for Multiplane Computer-Generated HolographyKoray Kavakli, Yuta Itoh, Hakan Urey, Kaan AksitIEEE VR 2023 · 24 citations
Related papers
- Beaming DisplaysYuta Itoh, Takumi Kaminokado, Kaan AksitIEEE VR 2021 · 33 citations
- Slim Diffractive Waveguide Glasses for Beaming Displays with Enhanced Head Orientation ToleranceYuta Itoh, Tomoya Nakamura, Yuichi Hiroi, Kaan AksitIEEE VR 2025 · 1 citation
- AAR: Augmenting a Wearable Augmented Reality Display with an Actuated Head-Mounted ProjectorJeremy Hartmann, Yen-Ting Yeh, Daniel VogelUIST 2020 · 38 citations
- Holographie optics for thin and lightweight virtual realityAndrew Maimone, Junren WangSIGGRAPH 2020 · 125 citations
- Light Pipe Holographic Display: Bandwidth-preserved Kaleidoscopic Guiding for AR GlassesMinseok Chae, Chun Chen, Seung-Woo Nam, Yoonchan JeongSIGGRAPH 2025 · 2 citations
