论文标题

Skyrmion-Defect相互作用曲线的亚纳米级原子

Sub-nanoscale atom-by-atom crafting of skyrmion-defect interaction profiles

论文作者

Arjana, I Gede, Fernandes, Imara Lima, Chico, Jonathan, Lounis, Samir

论文摘要

由于其拓扑性质和纳米尺寸,磁性天空是主要候选者作为Spintronic设备的信息载体。然而,不可避免的任何材料固有的不均匀性导致了固定或排斥天空的不均匀性,这些天空与生物学概念类似,定义了Skyrmion-Defect相互作用的表型,在运动中产生了复杂性,并挑战了他们作为未来信息的应用。在这里,我们证明,抗铁磁或铁磁剂的多原子缺陷的原子制造允许其能量曲线的繁殖,为此我们在示意性地构建了punnet-square。正如IR(111)表面上PDFE双层中产生的Skyrmions的第一原理所确定的,所得的相互作用表型富含。它可以与原始的相反,最终具有双固定抑制性质,产生了托有多域的能量景观。这是由吸附缺陷的堆叠位点,几何形状,大小和化学性质决定的,这些缺陷控制涉及的磁相互作用。这项工作为开发颠覆性设备体系结构的开发提供了新的见解,该架构将缺陷纳入其设计旨在控制和指导天空。

Magnetic skyrmions are prime candidates as information carriers for spintronic devices due to their topological nature and nanometric size. However, unavoidable inhomogeneities inherent to any material leads to pinning or repulsion of skyrmions that, in analogy to biology concepts, define the phenotype of the skyrmion-defect interaction, generating complexity in their motion and challenging their application as future bits of information. Here, we demonstrate that atom-by-atom manufacturing of multi-atomic defects, being antiferromagnetic or ferromagnetic, permits the breeding of their energy profiles, for which we build schematically a Punnet-square. As established from first-principles for skyrmions generated in PdFe bilayer on Ir(111) surface, the resulting interaction phenotype is rich. It can be opposite to the original one and eventually be of dual pinning-repulsive nature yielding energy landscapes hosting multi-domains. This is dictated by the stacking site, geometry, size and chemical nature of the adsorbed defects, which control the involved magnetic interactions. This work provides new insights towards the development of disruptive device architectures incorporating defects into their design aiming to control and guide skyrmions.

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