论文标题

通过磁性特性工程固定和散射抗铁磁的陷阱

Traps for pinning and scattering of antiferromagnetic skyrmions via magnetic properties engineering

论文作者

Toscano, D., Santece, I. A., Guedes, R. C. O., Assis, H. S., Miranda, A. L. S., de Araujo, C. I. L., Sato, F., Coura, P. Z., Leonel, S. A.

论文摘要

已经进行了微磁模拟,以研究抗铁磁纳米曲折中的天际位置的可控性,其磁性特性在空间上进行了修饰。在这项研究中,我们将磁性缺陷建模为材料参数的局部变化,例如交换刚度,饱和度磁化,垂直磁性磁晶和dzyaloshinskii-moriya常数。因此,当调整每个材料参数的局部增加或局部还原时,我们不仅观察到抗磁性天空的固定(潜在良好),还观察到了抗铁磁天空的散射(潜在屏障)。为了控制天空运动,沿着纳米龙的某些位置在Skyrmion可以停止的地方施加某些位置非常重要。有意纳入抗铁磁赛车赛车的磁性缺陷对于此目的是有用的。为了提供实验研究的准则,我们改变了修改区域的材料参数和大小。发现的结果表明,天空陷阱的效率取决于磁缺陷参数的合适组合。此外,我们讨论了Skyrmions被磁性修饰吸引或排斥的原因。

Micromagnetic simulations have been performed to investigate the controllability of the skyrmion position in antiferromagnetic nanotracks with their magnetic properties modified spatially. In this study we have modeled magnetic defects as local variations on the material parameters, such as the exchange stiffness, saturation magnetization, perpendicular magnetocrystalline anisotropy and Dzyaloshinskii-Moriya constant. Thus, we have observed not only pinning (potential well) but also scattering (potential barrier) of antiferromagnetic skyrmions, when adjusting either a local increase or a local reduction for each material parameter. In order to control of the skyrmion motion it is very important to impose certain positions along the nanotrack where the skyrmion can stop. Magnetic defects incorporated intentionally in antiferromagnetic racetracks can be useful for such purpose. In order to provide guidelines for experimental studies, we vary both material parameters and size of the modified region. The found results show that the efficiency of skyrmion trap depends on a suitable combination of magnetic defect parameters. Furthermore, we discuss the reason why skyrmions are either attracted or repelled by a region magnetically modified.

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