Two-dimensional pixel-level addressable mid-infrared metasurface spatial light modulator

C Cosmin-Constantin Popescu M Maarten Robbert Anton Peters O Oleg Maksimov H Harish B. Bhandari R Rashi Sharma K Kathleen A. Richardson A Arka Majumdar H Hyun Jung Kim R Rui Chen K Khoi Phuong Dao L Luigi Ranno B Brian Mills D Dennis M. Calahan T Tian Gu J Juejun Hu

Abstract

Abstract Active metasurfaces enable dynamic control of light for applications in beam steering, pixelated holography, and adaptive optics, but demonstrations of two-dimensional electrically addressable arrays have so far been limited. Here we introduce a scalable two-dimensional architecture based on phase-change materials integrated metasurfaces and apply it to realize the first transmissive mid-infrared amplitude-only spatial light modulator. The device is fabricated through standard silicon photonic foundry processing combined with backend-of-line integration and employs multilayer backend metal interconnects to implement a crossbar addressing scheme. Each pixel is integrated with a silicon diode selector to suppress sneak-path currents, a feature essential for scaling to large arrays. The result establishes a foundry-compatible route to high-density, large-area active metasurfaces with independently tunable pixels.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 07, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (15)

C

Cosmin-Constantin Popescu

M

Maarten Robbert Anton Peters

O

Oleg Maksimov

H

Harish B. Bhandari

R

Rashi Sharma

K

Kathleen A. Richardson

A

Arka Majumdar

H

Hyun Jung Kim

R

Rui Chen

K

Khoi Phuong Dao

L

Luigi Ranno

B

Brian Mills

D

Dennis M. Calahan

T

Tian Gu

J

Juejun Hu