论文标题

MNTE2/ZRS2的范德华异质结构中的多拓扑磁性

Multiple Topological Magnetism in van der Waals Heterostructure of MnTe2/ZrS2

论文作者

He, Zhonglin, Dou, Kaiying, Du, Wenhui, Dai, Ying, Huang, Baibiao, Ma, Yandong

论文摘要

低维系统中的拓扑磁性在凝结物理学和材料科学方面具有基本和实际的重要性。在这里,使用第一原理和蒙特 - 卡洛模拟,我们提出了多种拓扑磁性(即Skyrmion和Bimeron)可以在MNTE2ZRS2的Van der Waals异质结构中生存。 MNTE2ZRS2是由层间耦合引起的,可以具有较大的Dzyaloshinskii-Moriya相互作用。这与铁磁交换相互作用结合起来,产生了一个有趣的天空阶段,该阶段由低于10 nm的磁性天空组成,在75吨的微小磁场下。同时,在利用小电场后,也可以在MNTE2ZRS2中观察到磁性bimeron,这表明存在多种拓扑磁性。通过层间滑动,可以将两个拓扑旋转纹理打开,这表明它们的堆叠依赖性特征。此外,揭示了D和KEFF对这些自旋纹理的影响,并利用了无量纲参数来描述其关节效应。这些探讨的现象和见解不仅对拓扑磁性的基础研究有用,而且还可以在纳米版本中进行新颖的应用。

Topological magnetism in low-dimensional systems is of fundamental and practical importance in condensed-matter physics and material science. Here, using first-principles and Monte-Carlo simulations, we present that multiple topological magnetism (i.e., skyrmion and bimeron) can survive in van der Waals Heterostructure of MnTe2ZrS2. Arising from interlayer coupling, MnTe2ZrS2 can harbor a large Dzyaloshinskii-Moriya interaction. This, combined with ferromagnetic exchange interaction, yields an intriguing skyrmion phase consisting of sub-10 nm magnetic skyrmions under a tiny magnetic field of 75 mT. Meanwhile, upon harnessing a small electric field, magnetic bimeron can be observed in MnTe2ZrS2 as well, suggesting the existence of multiple topological magnetism. Through interlayer sliding, both topological spin textures can be switched on-off, suggesting their stacking-dependent character. In addition, the impacts of d and Keff on these spin textures are revealed, and a dimensionless parameter is utilized to describe their joint effect. These explored phenomena and insights not only are useful for fundamental research in topological magnetism, but also enable novel applications in nanodevices.

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