Acoustic Pancharatnam–Berry geometric phase for structured sound manipulation

W Wanyue Xiao (Department of Physics) W Wenjian Kuang (Division of Science, Engineering and Health Studies) S Sibo Huang (Department of Electrical Engineering) S Shanjun Liang (Division of Science, Engineering and Health Studies) D Din Ping Tsai (Department of Physics) S Shubo Wang (Department of Physics)

Abstract

Phase control is fundamental to acoustic wave manipulation. The propagation and resonant phases have been widely used to modulate acoustic waves. However, the real-space geometric phase, also known as the Pancharatnam–Berry (PB) phase, has remained elusive in acoustics, owing to the fact that airborne sounds are curl-free longitudinal waves lacking intrinsic polarization degrees of freedom. Here, we theoretically and experimentally demonstrate that the PB phase can emerge in inhomogeneous sound waves with polarization evolution of velocity field. Using surface sound waves as an example, we uncover the intriguing Janus property of the PB phase arising from spin-momentum locking, and experimentally demonstrate acoustic PB metasurfaces for versatile wavefront manipulation. We further extend the mechanism to free-space structured sound and realize acoustic q -plates for converting vortex topological charge through spin–orbit interaction. Our work uncovers a type of acoustic phase and provides a simple yet effective mechanism for structured sound manipulation, with promising applications in acoustic communications, imaging, and on-chip devices.

Article Details

Volume / Issue Vol. 123, Issue 11
Published March 17, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (6)

W

Wanyue Xiao

Department of Physics

W

Wenjian Kuang

Division of Science, Engineering and Health Studies

S

Sibo Huang

Department of Electrical Engineering

S

Shanjun Liang

Division of Science, Engineering and Health Studies

D

Din Ping Tsai

Department of Physics

S

Shubo Wang

Department of Physics