English

Inverse design enables large-scale high-performance meta-optics reshaping virtual reality

Optics 2022-05-18 v1

Abstract

Meta-optics has achieved major breakthroughs in the past decade; however, conventional forward design faces challenges as functionality complexity and device size scale up. Inverse design aims at optimizing meta-optics design but has been currently limited by expensive brute-force numerical solvers to small devices, which are also difficult to realize experimentally. Here, we present a general inverse design framework for aperiodic large-scale complex meta-optics in three dimensions, which alleviates computational cost for both simulation and optimization via a fast-approximate solver and an adjoint method, respectively. Our framework naturally accounts for fabrication constraints via a surrogate model. In experiments, we demonstrate, for the first time, aberration-corrected metalenses working in the visible with high numerical aperture, poly-chromatic focusing, and large diameter up to centimeter scale. Such large-scale meta-optics opens a new paradigm for applications, and we demonstrate its potential for future virtual-reality platforms by using a meta-eyepiece and a laser back-illuminated micro-Liquid Crystal Display.

Keywords

Cite

@article{arxiv.2104.09702,
  title  = {Inverse design enables large-scale high-performance meta-optics reshaping virtual reality},
  author = {Zhaoyi Li and Raphaël Pestourie and Joon-Suh Park and Yao-Wei Huang and Steven G. Johnson and Federico Capasso},
  journal= {arXiv preprint arXiv:2104.09702},
  year   = {2022}
}
R2 v1 2026-06-24T01:21:17.343Z