论文标题

Dzyaloshinskii-Moriya的相互作用和磁性天际由曲率引起的

Dzyaloshinskii-Moriya interaction and magnetic skyrmions induced by curvature

论文作者

Ga, Yonglong, Cui, Qirui, Liang, Jinghua, Yu, Dongxing, Zhu, Yingmei, Wang, Liming, Yang, Hongxin

论文摘要

在固有的二维(2D)磁体中实现了相当大的Dzyaloshinskii-Moriya相互作用(DMI),而无需进行任何操纵,将极大地富含Spiltronics设备的潜在应用。最简单,最理想的情况应该是具有固有的DMI和内在手性旋转纹理的2D磁铁。在这里,我们建议通过在低维磁体中设计具有不同曲率的定期纹波结构来实现DMI,并通过使用第一原则计算,在一维(1D)CRBR2和二维(2D)MNSE2磁铁中证明了该概念。我们发现,曲线CRBR2和MNSE2中的DMI可以通过改变曲率C的大小来有效控制,其中C定义为曲线结构的高度H和长度L之间的比率。此外,我们揭示了计算出的DMI对曲率C大小的依赖性可以通过三个位置Fert-Lévy模型很好地描述。最后,我们发现可以通过基于第一原理计算出的磁参数的原子自旋模拟模拟来实现无磁性天空。这项工作将通过曲率为简单的2D磁铁诱导DMI和手性旋转纹理打开新的途径。

Realizing sizeable Dzyaloshinskii-Moriya interaction (DMI) in intrinsic two-dimensional (2D) magnets without any manipulation will greatly enrich potential application of spintronics devices. The simplest and most desirable situation should be 2D magnets with intrinsic DMI and intrinsic chiral spin textures. Here, we propose to realize DMI by designing periodic ripple structures with different curvatures in low-dimensional magnets and demonstrate the concept in both one-dimensional (1D) CrBr2 and two-dimensional (2D) MnSe2 magnets by using first-principles calculations. We find that DMIs in curved CrBr2 and MnSe2 can be efficiently controlled by varying the size of curvature c, where c is defined as the ratio between the height h and the length l of curved structure. Moreover, we unveil that the dependence of first-principles calculated DMI on size of curvature c can be well described by the three-site Fert-Lévy model. At last, we uncover that field-free magnetic skyrmions can be realized in curved MnSe2 by using atomistic spin model simulations based on first-principles calculated magnetic parameters. The work will open a new avenue for inducing DMI and chiral spin textures in simple 2D magnets via curvature.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源