Ferromagnetic Layer Thickness Dependence of Magnetic Domain Structure in Ultrathin Symmetric Ta/Pt/Co/Pt/Ta Multilayers

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초록

To minimize the total film thickness and to make symmetric layer structures, the ultrathin symmetric Ta(1 nm)/Pt(1.7 nm)/Co(t)/Pt(1.7 nm)/Ta(1 nm) multilayers, where the Co thickness (t) was varied from 0.3 to 1.4 nm, were fabricated on Si substrate with a native oxide layer. The perpendicular magnetic anisotropy (PMA) was observed in the range of t = 0.3-0.9 nm. The coercive field of similar to 16 mT for t = 0.7 nm and the domain wall velocity of similar to 100 mu m/s for t <= 0.6 nm were comparable with those in previous reports. Surprisingly, as the Co thickness approached 0.9 nm, the domain wall velocity dropped dramatically to similar to 0.1 mu m/s, and the magnetic domain structure shifted from big-circular domains to small-bubble domains. A change from PMA to easy-plane magnetic anisotropy around t = 0.95 nm could be explained using the classic Kittel's model. Because of their good PMA, such ultrathin symmetric multilayers could be used in various spintronic applications.

키워드

Co/Pt multilayer; magnetic domain structure; magneto-optic Kerr effect (MOKE) microscopy; perpendicular magnetic anisotropy (PMA); CO FILMS; CO/PT MULTILAYERS; ANISOTROPY; REVERSAL; FIELD; REORIENTATION; COERCIVITY; ROUGHNESS; ASYMMETRY; PT/CO
제목
Ferromagnetic Layer Thickness Dependence of Magnetic Domain Structure in Ultrathin Symmetric Ta/Pt/Co/Pt/Ta Multilayers
저자
Dho, Joonghoe
DOI
10.1109/TMAG.2022.3199591
발행일
2022-10
유형
Article
저널명
IEEE Transactions on Magnetics
권
58
호
10