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单层CrCl₃中类Meron拓扑自旋缺陷

Meron-like topological spin defects in monolayer CrCl.

作者信息

Lu Xiaobo, Fei Ruixiang, Zhu Linghan, Yang Li

机构信息

Department of Physics, Washington University in St. Louis, St. Louis, MO, 63130, USA.

Institute of Materials Science and Engineering, Washington University in St. Louis, St. Louis, MO, 63130, USA.

出版信息

Nat Commun. 2020 Sep 18;11(1):4724. doi: 10.1038/s41467-020-18573-8.

Abstract

Noncollinear spin textures in low-dimensional magnetic systems have been studied for decades because of their extraordinary properties and promising applications derived from the chirality and topological nature. However, material realizations of topological spin states are still limited. Employing first-principles and Monte Carlo simulations, we propose that monolayer chromium trichloride (CrCl) can be a promising candidate for observing the vortex/antivortex type of topological defects, so-called merons. The numbers of vortices and antivortices are found to be the same, maintaining an overall integer topological unit. By perturbing with external magnetic fields, we show the robustness of these meron pairs and reveal a rich phase space to tune the hybridization between the ferromagnetic order and meron-like defects. The signatures of topological excitations under external magnetic field also provide crucial information for experimental justifications. Our study predicts that two-dimensional magnets with weak spin-orbit coupling can be a promising family for realizing meron-like spin textures.

摘要

由于其非凡的性质以及源自手性和拓扑性质的潜在应用,低维磁系统中的非共线自旋纹理已经被研究了数十年。然而,拓扑自旋态的材料实现仍然有限。通过第一性原理和蒙特卡罗模拟,我们提出单层三氯化铬(CrCl)可能是观察涡旋/反涡旋类型拓扑缺陷(即所谓的磁单极子)的一个有前景的候选材料。发现涡旋和反涡旋的数量相同,保持整体整数拓扑单元。通过外部磁场微扰,我们展示了这些磁单极子对的稳健性,并揭示了一个丰富的相空间来调节铁磁序和类磁单极子缺陷之间的杂化。外部磁场下拓扑激发的特征也为实验验证提供了关键信息。我们的研究预测,具有弱自旋轨道耦合的二维磁体可能是实现类磁单极子自旋纹理的一个有前景的家族。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab83/7501285/cc7c3d028dc3/41467_2020_18573_Fig1_HTML.jpg

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