TY - JOUR
T1 - Asymmetry in magnetic behavior caused by superposition of unidirectional and four-fold magnetic anisotropies in CoPt/FeMn bilayers
AU - Pan, Chunjiao
AU - Gao, Tenghua
AU - Harumoto, Takashi
AU - Zhang, Zhengjun
AU - Nakamura, Yoshio
AU - Shi, Ji
N1 - Publisher Copyright:
© 2019
PY - 2019/6/30
Y1 - 2019/6/30
N2 - We investigated magnetic anisotropy and magnetization reversal process in CoPt/FeMn bilayers by four-probe measurements of anisotropic magnetoresistance (AMR) effect. Here, a single crystal-CoPt/polycrystal-FeMn interface has been established, where A1-CoPt layer with four-fold magnetic anisotropy was epitaxially grown on MgO(100) substrate, while the top FeMn layer was 111 textured showing in-plane polycrystalline feature. Due to the noncollinear 3Q AFM spin structure and existence of uncompensated spins in ultrathin FeMn, the magnetic anisotropy of the bilayer can be tuned through interfacial exchange coupling, controlled by field cooling treatment. As a result, it gives rise to asymmetric AMR curves. We show that this asymmetry strongly relies on the direction of induced unidirectional magnetic anisotropy with respect to the easy axis of CoPt layer, leading to a modulated magnetization reversal process.
AB - We investigated magnetic anisotropy and magnetization reversal process in CoPt/FeMn bilayers by four-probe measurements of anisotropic magnetoresistance (AMR) effect. Here, a single crystal-CoPt/polycrystal-FeMn interface has been established, where A1-CoPt layer with four-fold magnetic anisotropy was epitaxially grown on MgO(100) substrate, while the top FeMn layer was 111 textured showing in-plane polycrystalline feature. Due to the noncollinear 3Q AFM spin structure and existence of uncompensated spins in ultrathin FeMn, the magnetic anisotropy of the bilayer can be tuned through interfacial exchange coupling, controlled by field cooling treatment. As a result, it gives rise to asymmetric AMR curves. We show that this asymmetry strongly relies on the direction of induced unidirectional magnetic anisotropy with respect to the easy axis of CoPt layer, leading to a modulated magnetization reversal process.
KW - Antiferromagnet
KW - Interfacial exchange coupling
KW - Magnetic anisotropy
KW - Magnetization reversal
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U2 - 10.1016/j.apsusc.2019.02.212
DO - 10.1016/j.apsusc.2019.02.212
M3 - Article
AN - SCOPUS:85062258923
SN - 0169-4332
VL - 480
SP - 148
EP - 153
JO - Applied Surface Science
JF - Applied Surface Science
ER -