首页> 外文期刊>Journal of nanoscience and nanotechnology >Effects of In-Plane Magnetization Orientation on Magnetic and Electronic Properties in a Bcc Co (001)/Rock Salt MgO (001)/Bcc Co (001) Magnetic Tunnel Junction System: Ab Initio Calculations
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Effects of In-Plane Magnetization Orientation on Magnetic and Electronic Properties in a Bcc Co (001)/Rock Salt MgO (001)/Bcc Co (001) Magnetic Tunnel Junction System: Ab Initio Calculations

机译:平面内磁化方向对Bcc Co(001)/岩盐MgO(001)/ Bcc Co(001)磁性隧道结系统中磁性和电子性质的影响:从头算

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摘要

Ab initio calculations were performed on a fully epitaxial bcc Co (001)/rock salt MgO (001)/bcc Co (001) magnetic tunnel junction system for two cases where the magnetization is parallel to bcc Co [100] and to bcc Co [110]. Structural optimization reveals that the two cases are equivalent systems and that the Co electrodes contract in the z-direction whereas the MgO insulating barrier expands. The magnetic moments of each monolayer vary slightly in each case; furthermore, only the magnetic moment at the surface of the Co atom shows any enhancement (12%). The layer decomposed density of states profiles reveals that the bonding character of the junction interface is derived mainly from the 2p-3d hybridization of the MgO and Co interfacial atoms.
机译:在完全平行于bcc Co(100)和bcc Co [100]和bcc Co [[b] 110]。结构优化表明,这两种情况是等效的系统,Co电极沿z方向收缩,而MgO绝缘势垒扩展。每个单层的磁矩在每种情况下都略有不同;此外,只有在Co原子表面的磁矩显示出任何增强(12%)。层分解状态密度分布表明,结界面的键合特性主要源自MgO和Co界面原子的2p-3d杂化。

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