A phononic crystal waveguide using surface waves below the sound cone

K Karanpreet Singh (Department of Physics, Engineering Physics & Astronomy, Queen's University Kingston , Ontario K7L 3N6,) G Gabe Willson (Department of Physics, Engineering Physics & Astronomy, Queen's University Kingston , Ontario K7L 3N6,) J James A. H. Stotz (Department of Physics, Engineering Physics & Astronomy, Queen's University Kingston , Ontario K7L 3N6,)

Abstract

Surface acoustic waves are commonly used in a variety of radio-frequency electrical devices as a result of their operation at high frequencies and robust nature. For devices based on Rayleigh-like plane waves, functionality is based on the fact that the Rayleigh wave mode is confined at the solid–air interface. However, to create advanced functionality through the use of phononic crystal structures, standard cylindrical inclusions have been shown to couple Rayleigh modes to the shear horizontal bulk modes and provide a significant pathway to energy loss. We introduce alternative inclusion shapes with a reduced two-fold symmetry that lowers the speed of the Rayleigh-like surface acoustic wave to below that of the shear horizontal mode. With an eigenfrequency below the sound line, the mode is confined to the surface with limited coupling and loss to the bulk. Based on these inclusions, an acoustic waveguide design is proposed, which demonstrates a strong confinement of wave energy both at the surface and within the waveguide.

Article Details

Volume / Issue Vol. 126, Issue 2
Published January 13, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (3)

K

Karanpreet Singh

Department of Physics, Engineering Physics & Astronomy, Queen's University Kingston , Ontario K7L 3N6,

G

Gabe Willson

Department of Physics, Engineering Physics & Astronomy, Queen's University Kingston , Ontario K7L 3N6,

J

James A. H. Stotz

Department of Physics, Engineering Physics & Astronomy, Queen's University Kingston , Ontario K7L 3N6,