Reconfigurable multifunctional acoustic metagratings enabled by local phase harnessing

Y Yu Chen J Jiaqi Quan (School of Physical Science and Technology & Jiangsu Key Laboratory of Frontier Material Physics and Devices, Soochow University 1 , Suzhou 215006,) Y Yue Gao B Baoyin Sun (School of Physical Science and Technology & Jiangsu Key Laboratory of Frontier Material Physics and Devices, Soochow University 1 , Suzhou 215006,) F Feng Gao Y Yangyang Fu Y Yadong Xu (Division of Engineering and Applied Science, California Institute of Technology)

Abstract

Metasurfaces and metagratings show significant potential in revolutionizing acoustic devices, with applications spanning areas such as structural health monitoring and communication. Nevertheless, most previous metasurfaces are realized with limited single functions, as well as complicated structures or low transformation efficiency, leaving the reconfigurable mode-transition reflective metagratings with high efficiency largely uncharted. Here, we propose a distinctly reconfigurable phase-gradient metagrating (PGM) for wave reflection manipulations. We demonstrate that by harnessing only the local phase in the PGM, multi-functionalities can be achieved, including a transition from the perfect retro-reflection to perfect specular reflection. Moreover, we illustrate the robust full-angle incidence response for the reflection conversion enabled by the PGM. These results have been confirmed by the consistent results of theory, simulations, and experiments. The proposed reconfigurable PGM with its simple design, not only broadens the fundamental understanding of diffraction order transitions but also provides an alternative avenue for acoustic applications such as multi-functional information processing.

Article Details

Volume / Issue Vol. 126, Issue 20
Published May 19, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (7)

Y

Yu Chen

J

Jiaqi Quan

School of Physical Science and Technology & Jiangsu Key Laboratory of Frontier Material Physics and Devices, Soochow University 1 , Suzhou 215006,

Y

Yue Gao

B

Baoyin Sun

School of Physical Science and Technology & Jiangsu Key Laboratory of Frontier Material Physics and Devices, Soochow University 1 , Suzhou 215006,

F

Feng Gao

Y

Yangyang Fu

Y

Yadong Xu

Division of Engineering and Applied Science, California Institute of Technology