Theory of polarization-dependent phonon pumping in ferromagnetic/non-magnetic bilayers

M M. Cherkasskii (Institute for Theoretical Solid State Physics, RWTH Aachen University 1 , DE-52074 Aachen,) F F. Engelhardt (Institute for Theoretical Solid State Physics, RWTH Aachen University 1 , DE-52074 Aachen,) M M. Müller J J. Weber (Walther-Meißner-Institut, Bayerische Akademie der Wissenschaften 4 , 85748 Garching,) M M. Althammer (Walther-Meißner-Institut, Bayerische Akademie der Wissenschaften 4 , 85748 Garching,) S S. T. B. Goennenwein (Department of Physics, University of Konstanz 1 , 78457 Konstanz,) H H. Huebl (Walther-Meißner-Institut, Bayerische Akademie der Wissenschaften 4 , 85748 Garching,) S S. Viola Kusminskiy (Institute for Theoretical Solid State Physics, RWTH Aachen University 1 , DE-52074 Aachen,)

Abstract

We develop a theoretical model for polarization-selective phonon pumping induced by magnon–phonon coupling in a ferromagnetic/non-magnetic acoustic bilayer structure, focusing on the effects arising from a misalignment between the magnetic and crystallographic symmetry axes. Our model considers the coupled equations of motion describing uniform magnetization dynamics (the Kittel mode) and elastic waves in both layers, incorporating phonon pumping and boundary conditions at the interface. We show that even small misalignments lift the degeneracy of transverse shear elastic modes, resulting in phononic birefringence characterized by distinct propagation velocities for linearly polarized modes. Furthermore, our analysis reveals that magnon-phonon hybridization gives magnetic-field-dependent properties to otherwise non-magnetic phonons. We show that the polarization transfer between linearly polarized phonons and the circularly polarized Kittel mode can be tuned with an external magnetic field. Our theoretical results quantitatively reproduce recent experimental findings [M. Müller, Phys. Rev. B 109, 024430 (2024)].

Article Details

Volume / Issue Vol. 138, Issue 4
Published July 28, 2025
ISSN 0021-8979
Publisher American Institute of Physics

Journal Info

Journal of Applied Physics

American Institute of Physics

ISSN: 0021-8979 Physical Sciences

Authors (8)

M

M. Cherkasskii

Institute for Theoretical Solid State Physics, RWTH Aachen University 1 , DE-52074 Aachen,

F

F. Engelhardt

Institute for Theoretical Solid State Physics, RWTH Aachen University 1 , DE-52074 Aachen,

M

M. Müller

J

J. Weber

Walther-Meißner-Institut, Bayerische Akademie der Wissenschaften 4 , 85748 Garching,

M

M. Althammer

Walther-Meißner-Institut, Bayerische Akademie der Wissenschaften 4 , 85748 Garching,

S

S. T. B. Goennenwein

Department of Physics, University of Konstanz 1 , 78457 Konstanz,

H

H. Huebl

Walther-Meißner-Institut, Bayerische Akademie der Wissenschaften 4 , 85748 Garching,

S

S. Viola Kusminskiy

Institute for Theoretical Solid State Physics, RWTH Aachen University 1 , DE-52074 Aachen,