English

Light Pipe Holographic Display: Bandwidth-preserved Kaleidoscopic Guiding for AR Glasses

Optics 2025-07-08 v1

Abstract

In this paper, we present a holographic display using a light pipe for augmented reality, and the hologram rendering method via bandwidth-preserved kaleidoscopic guiding method. Conventional augmented reality displays typically share optical architectures where the light engine and image combiner are adjacent. Minimizing the size of both components is highly challenging, and most commercial and research prototypes of augmented reality displays are bulky, front-heavy and sight-obstructing. Here, we propose the use of light pipe to decouple and spatially reposition the light engine from the image combiner, enabling a pragmatic glasses-type design. Through total internal reflection, light pipes have an advantage in guiding the full angular bandwidth regardless of its length. By modeling such kaleidoscopic guiding of the wavefront inside the light pipe and applying it to holographic image generation, we successfully separate the light engine from the image combiner, making the front of the device clear and lightweight. We experimentally validate that the proposed light pipe system delivers virtual images with high-quality and 3D depth cues. We further present a method to simulate and compensate for light pipe misalignment, enhancing the robustness and practicality of the proposed system.

Keywords

Cite

@article{arxiv.2507.04374,
  title  = {Light Pipe Holographic Display: Bandwidth-preserved Kaleidoscopic Guiding for AR Glasses},
  author = {Minseok Chae and Chun Chen and Seung-Woo Nam and Yoonchan Jeong},
  journal= {arXiv preprint arXiv:2507.04374},
  year   = {2025}
}

Comments

Author's accepted version. Published in ACM TOG / SIGGRAPH 2025. The final version is available at https://doi.org/10.1145/3731429