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在极小的Dzyaloshinskii-Moriya相互作用或零磁场下的斯格明子。

Skyrmions at vanishingly small Dzyaloshinskii-Moriya interaction or zero magnetic field.

作者信息

Bera Sandip, Mandal Sudhansu S

机构信息

Department of Physics, Indian Institute of Technology, Kharagpur, West Bengal 721302, India.

出版信息

J Phys Condens Matter. 2021 May 21;33(25). doi: 10.1088/1361-648X/abf783.

Abstract

By introducing biquadratic together with usual bilinear ferromagnetic nearest neighbor exchange interaction in a square lattice, we find that the energy of the spin-wave mode is minimized at a finite wavevector for a vanishingly small Dzyaloshinskii-Moriya interaction (DMI), supporting a ground state with spin-spiral structure whose pitch length is unusually short as found in some of the experiments. Apart from reproducing the magnetic structures that can be obtained in a canonical model with nearest neighbor exchange interaction only, a numerical simulation of this model with further introduction of magnetic anisotropy and magnetic field predicts many other magnetic structures some of which are already observed in the experiments. Among many observed structures, nanoscale skyrmion even at vanishingly small DMI is found for the first time in a model. The model provides the nanoscale skyrmions of unit topological charge at zero magnetic field as well. We obtain phase diagrams for all the magnetic structures predicted in the model.

摘要

通过在正方形晶格中引入双二次项以及通常的双线性铁磁最近邻交换相互作用,我们发现对于极小的Dzyaloshinskii-Moriya相互作用(DMI),自旋波模式的能量在有限波矢处最小化,这支持了一种具有自旋螺旋结构的基态,其螺距长度异常短,正如在一些实验中所发现的那样。除了重现仅具有最近邻交换相互作用的规范模型中可获得的磁结构外,进一步引入磁各向异性和磁场对该模型进行数值模拟预测了许多其他磁结构,其中一些已在实验中观察到。在许多观察到的结构中,首次在一个模型中发现即使DMI极小也存在纳米级斯格明子。该模型在零磁场下也提供了具有单位拓扑电荷的纳米级斯格明子。我们得到了该模型中预测的所有磁结构的相图。

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