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斯格明子的磁电分类

Magnetoelectric Classification of Skyrmions.

作者信息

Bhowal Sayantika, Spaldin Nicola A

机构信息

Materials Theory, ETH Zurich, Wolfgang-Pauli-Strasse 27, 8093 Zurich, Switzerland.

出版信息

Phys Rev Lett. 2022 Jun 3;128(22):227204. doi: 10.1103/PhysRevLett.128.227204.

Abstract

We develop a general theory to classify magnetic skyrmions and related spin textures in terms of their magnetoelectric multipoles. Since magnetic skyrmions are now established in insulating materials, where the magnetoelectric multipoles govern the linear magnetoelectric response, our classification provides a recipe for manipulating the magnetic properties of skyrmions using applied electric fields. We apply our formalism to skyrmions and antiskyrmions of different helicities, as well as to magnetic bimerons, which are topologically, but not geometrically, equivalent to skyrmions. We show that the nonzero components of the magnetoelectric multipole and magnetoelectric response tensors are uniquely determined by the topology, helicity, and geometry of the spin texture. Therefore, we propose straightforward linear magnetoelectric response measurements as an alternative to Lorentz microscopy for characterizing insulating skyrmionic textures.

摘要

我们发展了一种通用理论,根据磁电多极子对磁性斯格明子及相关自旋纹理进行分类。由于磁性斯格明子现已在绝缘材料中被发现,其中磁电多极子决定线性磁电响应,我们的分类为利用外加电场操控斯格明子的磁性提供了一种方法。我们将形式体系应用于不同螺旋度的斯格明子和反斯格明子,以及磁性双聚物,磁性双聚物在拓扑结构上与斯格明子等效,但在几何结构上不等效。我们表明,磁电多极子和磁电响应张量的非零分量由自旋纹理的拓扑结构、螺旋度和几何结构唯一确定。因此,我们提出直接的线性磁电响应测量作为洛伦兹显微镜的替代方法,用于表征绝缘斯格明子纹理。

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