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Magnetic patterning: local manipulation of the intergranular exchange coupling via grain boundary engineering

机译:磁性图案化:通过晶界工程局部控制晶间交换耦合

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摘要

Magnetic patterning, with designed spatial profile of the desired magnetic properties, has been a rising challenge for developing magnetic devices at nanoscale. Most existing methods rely on locally modifying magnetic anisotropy energy or saturation magnetization, and thus post stringent constraints on the adaptability in diverse applications. We propose an alternative route for magnetic patterning: by manipulating the local intergranular exchange coupling to tune lateral magnetic properties. As demonstration, the grain boundary structure of Co/Pt multilayers is engineered by thermal treatment, where the stress state of the multilayers and thus the intergranular exchange coupling can be modified. With Ag passivation layers on top of the Co/Pt multilayers, we can hinder the stress relaxation and grain boundary modification. Combining the pre-patterned Ag passivation layer with thermal treatment, we can design spatial variations of the magnetic properties by tuning the intergranular exchange coupling, which diversifies the magnetic patterning process and extends its feasibility for varieties of new devices.
机译:具有设计的所需磁特性的空间轮廓的磁图案化对于开发纳米​​级的磁性器件一直是一个日益严峻的挑战。大多数现有方法依赖于局部修改磁各向异性能量或饱和磁化强度,因此对各种应用的适应性提出了严格的限制。我们提出了一种用于磁图案化的替代方法:通过操纵局部晶间交换耦合来调节横向磁特性。作为演示,通过热处理工程设计了Co / Pt多层的晶界结构,其中可以修改多层的应力状态,从而改变晶间交换耦合。在Co / Pt多层的顶部上使用Ag钝化层,可以阻止应力松弛和晶界改性。将预构图的Ag钝化层与热处理相结合,我们可以通过调整晶间交换耦合来设计磁性能的空间变化,这使磁构图过程多样化,并扩展了其在各种新器件中的可行性。

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