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Spin-orbit torque in a bulk perpendicular magnetic anisotropy Pd/FePd/MgO system.


ABSTRACT: Spin-orbit torques, including the Rashba and spin Hall effects, have been widely observed and investigated in various systems. Since interesting spin-orbit torque (SOT) arises at the interface between heavy nonmagnetic metals and ferromagnetic metals, most studies have focused on the ultra-thin ferromagnetic layer with interface perpendicular magnetic anisotropy. Here, we measured the effective longitudinal and transverse fields of bulk perpendicular magnetic anisotropy Pd/FePd (1.54 to 2.43 nm)/MgO systems using harmonic methods with careful correction procedures. We found that in our range of thicknesses, the effective longitudinal and transverse fields are five to ten times larger than those reported in interface perpendicular magnetic anisotropy systems. The observed magnitude and thickness dependence of the effective fields suggest that the SOT do not have a purely interfacial origin in our samples.

SUBMITTER: Lee HR 

PROVIDER: S-EPMC4189023 | biostudies-literature | 2014 Oct

REPOSITORIES: biostudies-literature

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Spin-orbit torque in a bulk perpendicular magnetic anisotropy Pd/FePd/MgO system.

Lee Hwang-Rae HR   Lee Kyujoon K   Cho Jaehun J   Choi Young-Ha YH   You Chun-Yeol CY   Jung Myung-Hwa MH   Bonell Frédéric F   Shiota Yoichi Y   Miwa Shinji S   Suzuki Yoshishige Y  

Scientific reports 20141008


Spin-orbit torques, including the Rashba and spin Hall effects, have been widely observed and investigated in various systems. Since interesting spin-orbit torque (SOT) arises at the interface between heavy nonmagnetic metals and ferromagnetic metals, most studies have focused on the ultra-thin ferromagnetic layer with interface perpendicular magnetic anisotropy. Here, we measured the effective longitudinal and transverse fields of bulk perpendicular magnetic anisotropy Pd/FePd (1.54 to 2.43 nm)  ...[more]

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