Holographic Glasses for Virtual Reality
Jonghyun Kim, Manu Gopakumar, Suyeon Choi, Yifan Peng, Ward Lopes, Gordon Wetzstein
Abstract
We present Holographic Glasses, a holographic near-eye display system with an eyeglasses-like form factor for virtual reality. Holographic Glasses are composed of a pupil-replicating waveguide, a spatial light modulator, and a geometric phase lens to create holographic images in a lightweight and thin form factor. The proposed design can deliver full-color 3D holographic images using an optical stack of 2.5 mm thickness. A novel pupil-high-order gradient descent algorithm is presented for the correct phase calculation with the user’s varying pupil size. We implement benchtop and wearable prototypes for testing. Our binocular wearable prototype supports 3D focus cues and provides a diagonal field of view of 22.8° with a 2.3 mm static eye box and additional capabilities of dynamic eye box with beam steering, while weighing only 60 g excluding the driving board.
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Cited by top-tier papers4
- Time-multiplexed Neural Holography: A Flexible Framework for Holographic Near-eye Displays with Fast Heavily-quantized Spatial Light ModulatorsSuyeon Choi, Manu Gopakumar, Yifan Peng, Jonghyun Kim et al.SIGGRAPH 2022 · 84 citations
- Realistic Defocus Blur for Multiplane Computer-Generated HolographyKoray Kavakli, Yuta Itoh, Hakan Urey, Kaan AksitIEEE VR 2023 · 24 citations
- HoloBeam: Paper-Thin Near-Eye DisplaysKaan Aksit, Yuta ItohIEEE VR 2023 · 22 citations
- Gaussian Wave Splatting for Computer-Generated HolographySuyeon Choi, Brian Chao, Jacqueline Yang, Manu Gopakumar et al.SIGGRAPH 2025 · 17 citations
Builds on2
- Time-multiplexed Neural Holography: A Flexible Framework for Holographic Near-eye Displays with Fast Heavily-quantized Spatial Light ModulatorsSuyeon Choi, Manu Gopakumar, Yifan Peng, Jonghyun Kim et al.SIGGRAPH 2022 · 84 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
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