English

HoloBeam: Paper-Thin Near-Eye Displays

Human-Computer Interaction 2023-01-27 v2 Hardware Architecture Graphics Optics

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 (50 mm 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 a submillimeter thickness (e.g., HOE film is only 120 um thick). In addition, HoloBeam prototypes demonstrate near retinal resolutions (24 cycles per degree) with a 70 degrees-wide field of view.

Cite

@article{arxiv.2212.05057,
  title  = {HoloBeam: Paper-Thin Near-Eye Displays},
  author = {Kaan Akşit and Yuta Itoh},
  journal= {arXiv preprint arXiv:2212.05057},
  year   = {2023}
}

Comments

15 pages, 18 Figures, 1 Table, 1 Listing

R2 v1 2026-06-28T07:28:21.092Z