Large strain contribution to the laser-driven magnetization response of magnetostrictive TbFe2

C C. Walz (Institut für Physik und Astronomie, Universität Potsdam 2 , 14476 Potsdam,) F F.-C. Weber (Institut für Physik und Astronomie, Universität Potsdam 2 , 14476 Potsdam,) S S.-P. Zeuschner (Institut für Physik & Astronomie, Universität Potsdam 1 , 14476 Potsdam,) K K. Dumesnil (Institut Jean Lamour (UMR CNRS 7198), Université Lorraine 2 , 54000 Nancy,) A A. von Reppert (Institut für Physik und Astronomie, Universität Potsdam 2 , 14476 Potsdam,) M M. Bargheer (Institut für Physik und Astronomie, Universität Potsdam 2 , 14476 Potsdam,)

Abstract

We investigate strain-induced contributions to the transient polar magneto-optical Kerr effect response in laser-excited Terfenol. The time-resolved magneto-optical Kerr effect (tr-MOKE) signals obtained from TbFe2 films with and without glass capping exhibit distinct signatures associated with transient strain. We experimentally observe the arrival of strain pulses via the reflectivity change. The tr-MOKE response measured without changing the pump–probe geometry is delayed by several picoseconds. This suggests a genuine magnetization response as opposed to instantaneous changes of optical constants as the origin of the signal. We model the propagation of longitudinal acoustic picosecond strain pulses and incorporate the inverse magnetostriction effect via a magnetoelastic term in the effective field of the Landau–Lifshitz–Gilbert equation with large damping. This reproduces not only the delay of the pulsed response but also unveils the dominant contribution of quasi-static strain to the magnetization dynamics due to the thermal expansion in the optically probed near-surface region. Our experiments exemplify that purely longitudinal strain along the out-of-plane direction of the thin film enables efficient magnetoelastic coupling via the shear strain components arising in the oblique crystallographic frame of reference.

Article Details

Volume / Issue Vol. 127, Issue 5
Published August 04, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (6)

C

C. Walz

Institut für Physik und Astronomie, Universität Potsdam 2 , 14476 Potsdam,

F

F.-C. Weber

Institut für Physik und Astronomie, Universität Potsdam 2 , 14476 Potsdam,

S

S.-P. Zeuschner

Institut für Physik & Astronomie, Universität Potsdam 1 , 14476 Potsdam,

K

K. Dumesnil

Institut Jean Lamour (UMR CNRS 7198), Université Lorraine 2 , 54000 Nancy,

A

A. von Reppert

Institut für Physik und Astronomie, Universität Potsdam 2 , 14476 Potsdam,

M

M. Bargheer

Institut für Physik und Astronomie, Universität Potsdam 2 , 14476 Potsdam,