首页> 外文期刊>Journal of magnetism and magnetic materials >Role of an ultrathin platinum seed layer in antiferromagnet-based perpendicular exchange coupling and its electrical manipulation
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Role of an ultrathin platinum seed layer in antiferromagnet-based perpendicular exchange coupling and its electrical manipulation

机译:超薄铂金种子层在基于反铁磁体的垂直交换耦合中的作用及其电操纵

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摘要

The requirement for low-power consumption advances the development of antiferromagnetic (AFM) spintronics manipulated by electric fields. Here we report an electrical manipulation of metallic AFM moments within IrMn/[Co/Pt] by interface engineering, where ultrathin non-magnetic metals are highlighted between IrMn and ferroelectric substrates. Ultrathin Pt seed layers are proved to be vital in elevating the blocking temperature and enhancing the perpendicular exchange coupling through modulating the domain structures of as-prepared IrMn AFM. Further electrical manipulations of perpendicular magnetic anisotropy crucially verify the indispensable role of pre-deposited ultrathin Pt layers in modulating IrMn antiferromagnetic moments, which is confirmed by the intimate correlation between the electrically manipulating AFM and improving its blocking temperature. Instead of immediate contact between IrMn AFM and ferroelectric substrates in a conventional way, interface engineering by adopting ultrathin seed layers here adds a new twist to the electrical modulation of AFM metals. This would provide scientific basis on how to manipulate AFM moments and optimize the design of practical AFM spintronics.
机译:对低功耗的需求推动了电场操纵的反铁磁(AFM)自旋电子学的发展。在这里,我们报告了通过界面工程对IrMn / [Co / Pt]中的金属AFM矩进行的电操纵,其中在IrMn和铁电基体之间突出了超薄非磁性金属。事实证明,超薄Pt晶种层通过调节已制备的IrMn AFM的畴结构,对于提高阻断温度和增强垂直交换耦合至关重要。垂直磁各向异性的进一步电操纵至关重要地验证了预沉积的超薄Pt层在调制IrMn反铁磁矩中的必不可少的作用,这一点已通过电操纵AFM与改善其阻塞温度之间的密切相关性得到证实。代替以常规方式使IrMn AFM与铁电基体之间立即接触,此处采用超薄种子层的界面工程为AFM金属的电调制增加了新的变化。这将为如何操纵原子力显微镜力矩和优化实际原子力显微镜自旋电子器件的设计提供科学依据。

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