Design and Fabrication of a Low-cost Liquid Optical Waveguide for Augmented Reality

Fuente: arXiv
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Main Authors: Sun, Dechuan, Tanyi, Gregory, Lee, Alan, French, Chris, Liang, Younger, Lim, Christina, Unnithan, Ranjith R
Format: Preprint
Published: 2024
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author Sun, Dechuan
Tanyi, Gregory
Lee, Alan
French, Chris
Liang, Younger
Lim, Christina
Unnithan, Ranjith R
author_facet Sun, Dechuan
Tanyi, Gregory
Lee, Alan
French, Chris
Liang, Younger
Lim, Christina
Unnithan, Ranjith R
contents The complexities of fabrication techniques and the demand for high precision have posed significant challenges in the mass production of augmented reality (AR) waveguide combiners. Leveraging the capabilities of Polyjet 3D printing techniques, we have developed a cost-effective method for fabricating liquid geometric waveguide combiners for AR applications, using silicone oil as the medium. During the design phase, we optimized the structure of the waveguide combiner to facilitate easier fabrication. Our proposed method simplifies the production process by removing the need for complicated steps like dicing, layer bonding, and polishing, which are usually involved in traditional manufacturing techniques. We conducted optical simulations and developed a prototype using our patented fabrication method, which successfully demonstrated the integration of virtual images with the real-world environment, thereby confirming its feasibility and potential for cost-effective mass production.
format Preprint
id arxiv_https___arxiv_org_abs_2410_03157
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Design and Fabrication of a Low-cost Liquid Optical Waveguide for Augmented Reality
Sun, Dechuan
Tanyi, Gregory
Lee, Alan
French, Chris
Liang, Younger
Lim, Christina
Unnithan, Ranjith R
Optics
Applied Physics
The complexities of fabrication techniques and the demand for high precision have posed significant challenges in the mass production of augmented reality (AR) waveguide combiners. Leveraging the capabilities of Polyjet 3D printing techniques, we have developed a cost-effective method for fabricating liquid geometric waveguide combiners for AR applications, using silicone oil as the medium. During the design phase, we optimized the structure of the waveguide combiner to facilitate easier fabrication. Our proposed method simplifies the production process by removing the need for complicated steps like dicing, layer bonding, and polishing, which are usually involved in traditional manufacturing techniques. We conducted optical simulations and developed a prototype using our patented fabrication method, which successfully demonstrated the integration of virtual images with the real-world environment, thereby confirming its feasibility and potential for cost-effective mass production.
title Design and Fabrication of a Low-cost Liquid Optical Waveguide for Augmented Reality
topic Optics
Applied Physics
url https://arxiv.org/abs/2410.03157