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锯齿状磁偶极子晶格中磁流的内禀手征场作为矢量势。

Intrinsic chiral field as vector potential of the magnetic current in the zig-zag lattice of magnetic dipoles.

机构信息

Facultad de Ingeniería y Ciencias, Universidad Adolfo Ibáñez, Santiago, Chile.

Laboratory for Mesoscopic Systems, Department of Materials, ETH Zurich, Zurich, Switzerland.

出版信息

Sci Rep. 2023 Jan 23;13(1):1245. doi: 10.1038/s41598-023-28545-9.

Abstract

Chiral magnetic insulators manifest novel phases of matter where the sense of rotation of the magnetization is associated with exotic transport phenomena. Effective control of such phases and their dynamical evolution points to the search and study of chiral fields like the Dzyaloshinskii-Moriya interaction. Here we combine experiments, numerics, and theory to study a zig-zag dipolar lattice as a model of an interface between magnetic in-plane layers with a perpendicular magnetization. The zig-zag lattice comprises two parallel sublattices of dipoles with perpendicular easy plane of rotation. The dipolar energy of the system is exactly separable into a sum of symmetric and antisymmetric long-range exchange interactions between dipoles, where the antisymmetric coupling generates a nonlocal Dzyaloshinskii-Moriya field which stabilizes winding textures with the form of chiral solitons. The Dzyaloshinskii-Moriya interaction acts as a vector potential or gauge field of the magnetic current and gives rise to emergent magnetic and electric fields that allow the manifestation of the magnetoelectric effect in the system.

摘要

手性磁绝缘体表现出物质的新型相,其中磁化的旋转感与奇特的输运现象有关。对手性相及其动力学演化的有效控制指向对像 Dzyaloshinskii-Moriya 相互作用这样的手性场的探索和研究。在这里,我们结合实验、数值和理论来研究锯齿形偶极晶格,作为具有垂直磁化的平面内层之间界面的模型。锯齿晶格由两个具有垂直易旋转面的偶极子平行子晶格组成。系统的偶极子能量可以精确地分离为偶极子之间对称和反对称长程交换相互作用的和,其中反对称耦合产生非局域 Dzyaloshinskii-Moriya 场,稳定具有手性孤子形式的缠绕结构。Dzyaloshinskii-Moriya 相互作用充当磁流的矢量势或规范场,并产生新兴的磁场和电场,使系统中表现出磁电效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15fa/9870917/7f2d2112aa76/41598_2023_28545_Fig1_HTML.jpg

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