Fe contribution to the magnetic anisotropy of L10-ordered FePt thin films studied by angle-dependent x-ray magnetic circular dichroism

G Goro Shibata (Department of Physics, University of Tokyo 1 , Tokyo 113-0033,) K Keisuke Ikeda (Department of Physics, University of Tokyo 1 , Tokyo 113-0033,) T Takeshi Seki S Shoya Sakamoto (Department of Physics, University of Tokyo 1 , Tokyo 113-0033,) Y Yosuke Nonaka (Department of Physics) Z Zhendong Chi (CIC nanoGUNE BRTA 2 , 20018 Donostia-San Sebastian, Basque Country,) Y Yuxuan Wan (Department of Physics, University of Tokyo 1 , Tokyo 113-0033,) M Masahiro Suzuki T Tsuneharu Koide (Institute of Materials Structure Science, High Energy Accelerator Research Organization (KEK) 4 , Tsukuba 305-0801,) H Hiroki Wadati (The Institute for Solid State Physics, The University of Tokyo 5 , Kashiwa 277-8581,) K Koki Takanashi (Institute for Materials Research, Tohoku University 3 , Sendai 980-8577,) A Atsushi Fujimori (Department of Physics)

Abstract

Among magnetic thin films with perpendicular magnetic anisotropy (PMA), L10-ordered FePt has attracted significant attention because of its exceptionally strong PMA. However, the microscopic origin of its strong PMA has not been elucidated experimentally. We have investigated the contribution of the Fe 3d electrons to its magnetic anisotropy energy by angle-dependent x-ray magnetic circular dichroism at the Fe L2,3 edge. By this technique, one can deduce the magnetic dipole moment mT, which represents the anisotropic spatial distribution of spin-polarized electrons, and the orbital moment anisotropy (OMA) of Fe 3d electrons. Detected finite mT indicates that the spin-polarized Fe 3d electrons are distributed preferentially in the out-of-plane direction of the films. This mT of Fe overwhelms the positive contribution of OMA to PMA and reduces the PMA of L10-ordered FePt thin films, consistent with a previous first-principles calculation. The present result implies that a large positive contribution of the non-magnetic element Pt rather than Fe governs the PMA of L10-ordered FePt thin films.

Article Details

Volume / Issue Vol. 127, Issue 14
Published October 06, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (12)

G

Goro Shibata

Department of Physics, University of Tokyo 1 , Tokyo 113-0033,

K

Keisuke Ikeda

Department of Physics, University of Tokyo 1 , Tokyo 113-0033,

T

Takeshi Seki

S

Shoya Sakamoto

Department of Physics, University of Tokyo 1 , Tokyo 113-0033,

Y

Yosuke Nonaka

Department of Physics

Z

Zhendong Chi

CIC nanoGUNE BRTA 2 , 20018 Donostia-San Sebastian, Basque Country,

Y

Yuxuan Wan

Department of Physics, University of Tokyo 1 , Tokyo 113-0033,

M

Masahiro Suzuki

T

Tsuneharu Koide

Institute of Materials Structure Science, High Energy Accelerator Research Organization (KEK) 4 , Tsukuba 305-0801,

H

Hiroki Wadati

The Institute for Solid State Physics, The University of Tokyo 5 , Kashiwa 277-8581,

K

Koki Takanashi

Institute for Materials Research, Tohoku University 3 , Sendai 980-8577,

A

Atsushi Fujimori

Department of Physics