Mid-IR light modulators enabled by dynamically tunable ultra-high-Q silicon membrane metasurfaces

F Felix Ulrich Brikh A Aleksei Ezerskii O Olesia Pashina N Nikita Glebov W Wenhong Yang (Institute of Bioengineering) W Wenping Yin (Qingdao Innovation and Development Center, Harbin Engineering University 3 , Qingdao 266000,) S Sergey V. Makarov M Mihail Petrov I Ivan Sinev H Hatice Altug (Institute of Bioengineering)

Abstract

Abstract Metasurfaces enable subwavelength control of free-space light for applications in sensing, nonlinear optics, and quantum photonics. However, their practical deployment is hindered by two key limitations: a tradeoff between low- Q resonances and weak amplitude contrast, and their predominantly static nature allowing only passive functionalities. These challenges are particularly severe in the mid-infrared (mid-IR), where the scarcity of low-loss materials constrains performance and scalability. Here, we demonstrate actively tunable single-crystalline silicon membrane metasurfaces combining high- Q resonances, strong amplitude contrast, and wafer-scale manufacturability. Our platform achieves record-high measured Q -factors up to 3000 in the mid-IR and supports two dynamic modulation schemes: electro-thermal tuning via Joule heating with  >50% modulation depth at CMOS-compatible voltages and speeds up to 14.5 kHz, and ultrafast all-optical modulation via carrier generation in silicon with nanosecond response times and estimated sub-GHz rates. These results establish silicon membrane metasurfaces as a scalable platform for active mid-IR photonics.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 17, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (10)

F

Felix Ulrich Brikh

A

Aleksei Ezerskii

O

Olesia Pashina

N

Nikita Glebov

W

Wenhong Yang

Institute of Bioengineering

W

Wenping Yin

Qingdao Innovation and Development Center, Harbin Engineering University 3 , Qingdao 266000,

S

Sergey V. Makarov

M

Mihail Petrov

I

Ivan Sinev

H

Hatice Altug

Institute of Bioengineering