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首页> 外文期刊>Journal of magnetism and magnetic materials >Micromagnetic simulations study of skyrmions in magnetic FePt nanoelements
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Micromagnetic simulations study of skyrmions in magnetic FePt nanoelements

机译:FePt磁性纳米元素中天体离子的微磁模拟研究

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摘要

The magnetization reversal in 330 nm triangular prismatic magnetic nanoelements with variable magnetocrystalline anisotropy similar to that of partially chemically ordered FePt is studied using micromagnetic simulations employing Finite Element discretizations. Several magnetic properties including the evaluation of the magnetic skyrmion number S are computed in order to characterize magnetic configurations exhibiting vortex-like formations. Magnetic vortices and skyrmions are revealed in different systems generated by the variation of the magnitude and relative orientation of the magnetocrystalline anisotropy direction, with respect to the normal to the triangular prism base. Micromagnetic configurations with skyrmion number greater than one have been detected for the case where magnetocrystalline anisotropy was normal to nanoelement's base. For particular magnetocrystalline anisotropy values three distinct skyrmions are formed and persist for a range of external fields. The simulation-based calculations of the skyrmion number S revealed that skyrmions can be created for magnetic nanoparticle systems lacking of chiral interactions such as Dzyaloshinsky-Moriya, but by only varying the magnetocrystalline anisotropy.
机译:使用有限元离散化的微磁模拟研究了具有可变磁晶各向异性(类似于部分化学有序的FePt)的330 nm三角棱镜磁性纳米元素中的磁化反转。为了表征表现出涡旋状结构的磁性构型,计算了包括评估天空纺锤数S在内的几种磁性。相对于三角棱镜基体的法向,磁旋涡和天体离子在不同的系统中显示出来,这些系统是由磁晶各向异性方向的大小和相对方向的变化而产生的。对于磁晶各向异性垂直于纳米元素基体的情况,已经检测到天空离子数大于1的微磁结构。对于特定的磁晶各向异性值,形成了三个不同的天空离子,并在一定范围的外部磁场中持续存在。天基离子数S的基于模拟的计算表明,天基离子可以为缺乏手性相互作用的磁性纳米粒子系统(如Dzyaloshinsky-Moriya)创建,但仅通过改变磁晶各向异性即可。

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