Meta-optics redefines microdisplay: monolithic color LCoS without polarization dependency

X Xiangnian Ou Y Yueqiang Hu D Dian Yu S Shulin Liu S Shaozhen Lou Z Zhiwen Shu W Wenzhi Wei M Man Liu J Jianxiong Li T Tianhai Chang N Na Liu H Huigao Duan

Abstract

Abstract Liquid crystal on silicon (LCoS) panels are pivotal to high-resolution optical projection and imaging displays, yet their inherent polarization sensitivity and reliance on multi-chip architectures for color reproduction constrain the upper limit of light utilization, increase system complexity and restrict broader applicability. Here, we demonstrate a monolithic color meta-LCoS prototype that integrates dual-layer metasurfaces to achieve polarization-insensitive, full-color amplitude modulation on a single chip. Polarization sensitivity is eliminated via a synergistic design combining metasurface-enabled polarization conversion and voltage-controlled liquid crystal phase modulation, achieving a high-contrast, polarization-insensitive optical switch. By embedding red, green, and blue metasurface subpixels and meticulously designed off-axis angles, enabling direct color synthesis through a unified device. We showcase a 64-pixel monochrome and a 9-pixel color prototype capable of dynamically projecting diverse patterns under unpolarized illumination. Fully compatible with existing LCoS fabrication processes, our device significantly reduces system complexity and cost, offering transformative applications in next-generation projectors and AR/VR displays.

Article Details

Volume / Issue Vol. 16, Issue 1
Published December 08, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (12)

X

Xiangnian Ou

Y

Yueqiang Hu

D

Dian Yu

S

Shulin Liu

S

Shaozhen Lou

Z

Zhiwen Shu

W

Wenzhi Wei

M

Man Liu

J

Jianxiong Li

T

Tianhai Chang

N

Na Liu

H

Huigao Duan