Co thin films deposited directly on ZnO polar surfaces

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作者
Daichi Chiba
Naoya Shibata
Atsushi Tsukazaki
机构
[1] The University of Tokyo,Department of Applied Physics
[2] Institute of Engineering Innovation,undefined
[3] The University of Tokyo,undefined
[4] Institute for Materials Research,undefined
[5] Tohoku University,undefined
[6] PRESTO,undefined
[7] Japan Science and Technology Agency (JST),undefined
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摘要
A ferromagnetic (FM)-metal/oxide stack is the key structure determining the performance of spintronic devices. However, the effect of the electronic polarity of the oxide on the magnetic properties of the adjacent FM-metal has not been investigated previously. Here, we report the magnetic and structural properties of Co ultra-thin films sputter deposited directly on the Zn- and O-polar surfaces of ZnO substrates. The magnetic anisotropy and Curie temperature exhibit dramatic polarity-dependent differences for films on these surfaces. Structural analyses reveal that the heterointerface of the Co/O-polar surface is rather diffusive, whereas that of the Co/Zn-polar surface is atomically flat. These results suggest that the surface polarity plays a key role in determining the properties of the film. This novel FM-metal/polar-oxide system is expected to add new functionality to spintronic devices and provide an ideal basis for investigating the effect of a built-in electric field on the magnetism in a metallic monolayer.
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