论文标题

Bloch点纳米球之间的磁相互作用

Magnetostatic interaction between Bloch Point nanospheres

论文作者

Zambrano-Rabanal, Cristobal, Valderrama, Boris, Tejo, Felipe, Elías, Ricardo Gabriel, Nunez, Alvaro S., Carvalho-Santos, Vagson L., Vidal-Silva, Nicolás

论文摘要

近年来,三维拓扑纹理已成为一个强烈兴趣的话题。通过分析计算,这项工作决定了限制在磁性纳米球中的Bloch点(BP)奇异性产生的磁场场。据观察,宿主在纳米球中的BP会产生具有四极性质的磁场。这一发现很有趣,因为它显示了仅使用一个磁性粒子获得四极磁场的可能性,这与考虑磁性元素来生成这种场的其他命题不同。获得的磁场场使我们能够确定两个BP之间的相互作用,这是其极性相对方向以及它们之间的距离的函数。结果表明,根据一个与另一个BP相关的旋转,磁静态相互作用在强度和特征上有所不同,具有吸引力或排斥。获得的结果表明,BP相互作用超出拓扑电荷介导的相互作用具有复杂的行为。

Three-dimensional topological textures have become a topic of intense interest in recent years. Through analytical calculations, this work determines the magnetostatic field produced by a Bloch Point (BP) singularity confined in a magnetic nanosphere. It is observed that BPs hosted in a nanosphere generate magnetic fields with quadrupolar nature. This finding is interesting because it shows the possibility of obtaining quadrupole magnetic fields with just one magnetic particle, unlike other propositions considering arrays of magnetic elements to generate this kind of field. The obtained magnetostatic field allows us to determine the interaction between two BPs as a function of the relative orientation of their polarities and the distance between them. It is shown that depending on the rotation of one BP related to the other, the magnetostatic interaction varies in strength and character, being attractive or repulsive. The obtained results reveal that the BP interaction has a complex behavior beyond topological charge-mediated interaction.

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