DOAJ Open Access 2023

Temperature Dependence of Magnetization Dynamics in Co/IrMn and Co/FeMn Exchange Biased Structures

Irina O. Dzhun Andrey V. Gerasimenko Alexander A. Ezhov Stanislav I. Bezzubov Valeria V. Rodionova +2 lainnya

Abstrak

Thin film ferromagnet/antiferromagnet (F/AF) exchange biased structures that are widely used in GMR spin valves are considered nowadays as promising systems for antiferromagnetic spintronic and spin-orbitronic devices. Here, the temperature dependences of magnetization dynamics in Co/IrMn and Co/FeMn F/AF structures are investigated using ferromagnetic resonance (FMR) in comparison to a free Co layer. A strong additional decrease in the resonance field was observed in Co/IrMn with a temperature decrease attributed to the rotatable anisotropy increase, which almost vanished at room temperature. In contrast to Co/IrMn, the contribution of the rotatable anisotropy in Co/FeMn is much weaker, even though it exists at RT, it is negative, and slightly varies with the temperature and resonance field shift in Co/FeMn. This is mainly due to unidirectional exchange anisotropy. FMR linewidth for the free Co layer increases with decreasing temperature and is accompanied with a slow relaxation process, while the additional contribution to FMR line broadening in Co/IrMn and Co/FeMn structures is correlated with variation in the exchange anisotropy. The observed results are discussed based on structural and surface morphology and magnetization reversal characterization using X-ray diffraction, atomic force microscopy, and vibrating sample magnetometry data.

Topik & Kata Kunci

Penulis (7)

I

Irina O. Dzhun

A

Andrey V. Gerasimenko

A

Alexander A. Ezhov

S

Stanislav I. Bezzubov

V

Valeria V. Rodionova

C

Christina A. Gritsenko

N

Nikolai G. Chechenin

Format Sitasi

Dzhun, I.O., Gerasimenko, A.V., Ezhov, A.A., Bezzubov, S.I., Rodionova, V.V., Gritsenko, C.A. et al. (2023). Temperature Dependence of Magnetization Dynamics in Co/IrMn and Co/FeMn Exchange Biased Structures. https://doi.org/10.3390/magnetochemistry9100218

Akses Cepat

Informasi Jurnal
Tahun Terbit
2023
Sumber Database
DOAJ
DOI
10.3390/magnetochemistry9100218
Akses
Open Access ✓