On the nature of spin reorientation transition thermal hysteresis in NiO(111)/Fe(110) bilayers

E E. Świerkosz A A. Kwiatkowski M M. Szpytma W W. Janus M M. Zając P P. Dróżdż E E. Oleś A A. Kozioł-Rachwał T T. Ślęzak M M. Ślęzak

Abstract

Abstract We report on temperature-driven in-plane 90° magnetization switching in NiO(111)/Fe(110) bilayer epitaxially grown on a W(110) single crystal, investigated using magneto-optical Kerr effect and X-ray magnetic circular and linear dichroism measurements. As the temperature varies, an abrupt switching of the easy axis between the in-plane Fe[001] and Fe $$\left[ {1\overline{{{\text{1}}}} 0} \right]$$ crystallographic directions is observed. In the temperature range of approximately 210–285 K, a thermal hysteresis region appears, where two energy minima coexist at a given temperature. Our experimental findings are supported by phenomenological modeling. Simulations incorporating temperature-dependent anisotropy constants successfully reproduce the key features of the observed phenomenon, most notably the temperature-driven hysteresis of ferromagnetic magnetization switching. The spin reorientation transition in both exchange-coupled ferromagnetic and antiferromagnetic layers is driven by the interplay between magnetocrystalline and interfacial magnetic anisotropies in the ferromagnet, which stabilizes specific magnetization orientation at given temperature.

Article Details

Volume / Issue Vol. 15, Issue 1
Published July 01, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (10)

E

E. Świerkosz

A

A. Kwiatkowski

M

M. Szpytma

W

W. Janus

M

M. Zając

P

P. Dróżdż

E

E. Oleś

A

A. Kozioł-Rachwał

T

T. Ślęzak

M

M. Ślęzak