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具有易平面各向异性的准二维手性磁体中双聚体的“聚合”

"Polymerization" of Bimerons in Quasi-Two-Dimensional Chiral Magnets with Easy-Plane Anisotropy.

作者信息

Mukai Natsuki, Leonov Andrey O

机构信息

International Institute for Sustainability with Knotted Chiral Meta Matter, Kagamiyama, Higashihiroshima 739-8511, Hiroshima, Japan.

Department of Chemistry, Faculty of Science, Hiroshima University Kagamiyama, Higashihiroshima 739-8526, Hiroshima, Japan.

出版信息

Nanomaterials (Basel). 2024 Mar 11;14(6):504. doi: 10.3390/nano14060504.

Abstract

We re-examine the internal structure of bimerons, which are stabilized in easy-plane chiral magnets and represent coupled states of two merons with the same topological charge |1/2| but with opposite vorticity and the polarity. We find that, in addition to the vortices and antivortices, bimerons feature circular regions which are located behind the anti-vortices and bear the rotational sense opposite to the rotational sense chosen by the Dzyaloshinskii-Moriya interaction. In an attempt to eliminate these wrong-twist regions with an excess of positive energy density, bimerons assemble into chains, and as such exhibit an attracting interaction potential. As an alternative to chains, we demonstrate the existence of ring-shaped bimeron clusters of several varieties. In some rings, bimeron dipoles are oriented along the circle and swirl clockwise and/or counterclockwise (dubbed "roundabouts"). Moreover, a central meron encircled by the outer bimerons may possess either positive or negative polarity. In other rings, the bimeron dipoles point towards the center of a ring and consequently couple to the central meron (dubbed "crossings"). We point out that the ringlike solutions for baryons obtained within the Skyrme model of pions, although driven by the same tendency of the energy reduction, yield only one type of bimeron rings. The conditions of stability applied to the described bimeron rings are additionally extended to bimeron networks when bimerons fill the whole space of two-dimensional samples and exhibit combinations of rings and chains dispersed with different spatial density (dubbed bimeron "polymers"). In particular, bimeron crystals with hexagonal and the square bimeron orderings are possible when the sides of the unit cells represent chains of bimerons joined in intersections with three or four bimerons, respectively; otherwise, bimeron networks represent disordered bimeron structures. Moreover, we scrutinize the inter-transformations between hexagonal Skyrmion lattices and disordered bimeron polymers occuring via nucleation and mutual annihilation of merons within the cell boundaries. Our theory provides clear directions for experimental studies of bimeron orderings in different condensed-matter systems with quasi-two-dimensional geometries.

摘要

我们重新审视了双磁子的内部结构,双磁子在易平面手性磁体中是稳定的,代表了两个具有相同拓扑电荷|1/2|但涡度和极性相反的磁子的耦合态。我们发现,除了涡旋和反涡旋外,双磁子还具有圆形区域,这些区域位于反涡旋之后,其旋转方向与由Dzyaloshinskii-Moriya相互作用所选择的旋转方向相反。为了消除这些具有正能量密度过剩的错误扭曲区域,双磁子组装成链,因此表现出吸引相互作用势。作为链的替代形式,我们证明了存在几种不同类型的环形双磁子簇。在一些环中,双磁子偶极沿圆周取向,并顺时针和/或逆时针旋转(称为“环形交叉路口”)。此外,被外部双磁子环绕的中心磁子可能具有正或负极性。在其他环中,双磁子偶极指向环的中心,因此与中心磁子耦合(称为“交叉点”)。我们指出,在π介子的Skyrme模型中获得的重子的环形解,尽管是由相同的能量降低趋势驱动的,但只产生一种类型的双磁子环。当双磁子填充二维样品的整个空间并呈现以不同空间密度分散的环和链的组合(称为双磁子“聚合物”)时,应用于所描述的双磁子环的稳定性条件被进一步扩展到双磁子网络。特别是,当晶胞的边分别代表在与三个或四个双磁子的交点处相连的双磁子链时,可能存在具有六边形和方形双磁子有序排列的双磁子晶体;否则,双磁子网络代表无序的双磁子结构。此外,我们详细研究了通过在晶胞边界内磁子的成核和相互湮灭而发生的六边形Skyrmion晶格与无序双磁子聚合物之间的相互转变。我们的理论为在具有准二维几何结构的不同凝聚态系统中对双磁子有序排列的实验研究提供了明确的方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6fb/10974324/f7204df7b460/nanomaterials-14-00504-g001.jpg

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