YYYY
MMM
Ultracompact and high-efficiency liquid-crystal-on-silicon light engines for augmented reality glasses
应用于增强现实眼镜的超紧凑高效硅基液晶光引擎
リアルメガネを強化する超コンパクトで高効率なシリコンベース液晶光エンジン
증강현실 안경을 위한 초소형 고효율 실리콘 기반 액정광 엔진
Motor de luz LCD de silicio ultracompacto y eficiente para gafas de realidad aumentada
Moteur optique LCD ultra - compact et efficace à base de silicium pour lunettes de réalité augmentée
Сверхкомпактный высокоэффективный жидкокристаллический световой двигатель на основе кремния для очков дополненной реальности
Zhenyi Luo 罗桢埸 ¹, Yuqiang Ding 丁玉强 ¹, Fenglin Peng ², Guohua Wei ², Yun Wang ², Shin-Tson Wu 吴诗聪 ¹
¹ College of Optics and Photonics, University of Central Florida, Orlando FL 32816, USA
² Meta Reality Labs, 9845 Willows Road NE, Redmond, WA 98052, USA
Opto-Electronic Advances, 8 May 2024
Abstract

In lightweight augmented reality (AR) glasses, the light engines must be very compact while keeping a high optical efficiency to enable longtime comfortable wearing and high ambient contrast ratio. “Liquid-crystal-on-silicon (LCoS) or micro-LED, who wins?” is recently a heated debate question.

Conventional LCoS system is facing tremendous challenges due to its bulky illumination systems; it often incorporates a bulky polarizing beam splitter (PBS) cube. To minimize the formfactor of an LCoS system, here we demonstrate an ultracompact illumination system consisting of an in-coupling prism, and a light guide plate with multiple parallelepiped extraction prisms.

The overall module volume including the illumination optics and an LCoS panel (4.4-μm pixel pitch and 1024x1024 resolution elements), but excluding the projection optics, is merely 0.25 cc (cm³). Yet, our system exhibits an excellent illuminance uniformity and an impressive optical efficiency (36%–41% for a polarized input light). Such an ultracompact and high-efficiency LCoS illumination system is expected to revolutionize the next-generation AR glasses.
Opto-Electronic Advances_1
Opto-Electronic Advances_2
Opto-Electronic Advances_3
Reviews and Discussions
https://www.hotpaper.io/index.html
Dynamic spatial beam shaping for ultrafast laser processing: a review
Aberration-corrected differential phase contrast microscopy with annular illuminations
Multi-resonance enhanced photothermal synergistic fiber-optic Tamm plasmon polariton tip for high-sensitivity and rapid hydrogen detection
Broadband ultrasound generator over fiber-optic tip for in vivo emotional stress modulation
Non-volatile reconfigurable planar lightwave circuit splitter enabled by laser-directed Sb2S3 phase transitions
Progress in metalenses: from single to array
30 years of nanoimprint: development, momentum and prospects
Research progress on generating perfect vortex beams based on metasurfaces
High fiber-to-fiber net gain in erbium-doped thin film lithium niobate waveguide amplifier as an external gain chip
Eco-friendly quantum-dot light-emitting diode display technologies: prospects and challenges
Operando monitoring of state of health for lithium battery via fiber optic ultrasound imaging system
Integrated photonic polarizers with 2D reduced graphene oxide



Previous Article                                Next Article
About
|
Contact
|
Copyright © Hot Paper