Hussain Bushra, Cottam Michael
Department of Natural Sciences, University of Michigan, Dearborn, MI 48128, USA.
Department of Physics and Astronomy, University of Western Ontario, London, ON N6A 3K7, Canada.
Nanomaterials (Basel). 2024 Jan 30;14(3):286. doi: 10.3390/nano14030286.
A theory is presented to study the effect of interfacial Dzyaloshinskii-Moriya interactions (DMIs) on the static and dynamic magnetic properties in single-layered ferromagnetic nanorings. A microscopic (Hamiltonian-based) approach is used that also includes the antisymmetric DMI besides the competing symmetric (bilinear) exchange interactions, magnetic dipole-dipole interactions, and an applied magnetic field. Here, the axial vector of the DMI is taken to be in the plane of the nanoring (by contrast with earlier studies) and we explore cases where it is either parallel or perpendicular to the in-plane magnetic field. Significantly, with this orientation for the DMI axial vector, the inhomogeneous static magnetization is tilted to have a component perpendicular to the plane giving a surface texture. This effect is studied in both the low-field vortex and high-field onion states. There is a consequent modification to the discrete set of spin-wave modes in both states through their frequencies and spatial amplitudes. We present combined analytical and numerical results for the static properties and dynamical magnetization in ferromagnetic nanorings, including the variation with applied field.
提出了一种理论来研究界面Dzyaloshinskii-Moriya相互作用(DMI)对单层铁磁纳米环静态和动态磁性能的影响。采用了一种微观(基于哈密顿量)的方法,该方法除了考虑竞争的对称(双线性)交换相互作用、磁偶极-偶极相互作用和外加磁场外,还包括反对称DMI。在这里,DMI的轴向矢量被认为在纳米环平面内(与早期研究相反),并且我们探讨了它与平面内磁场平行或垂直的情况。值得注意的是,对于DMI轴向矢量的这种取向,不均匀的静态磁化强度会倾斜,从而具有垂直于平面的分量,形成表面纹理。在低场涡旋态和高场洋葱态中都研究了这种效应。通过它们的频率和空间振幅,两种状态下的离散自旋波模式集都会随之发生改变。我们给出了铁磁纳米环静态性质和动态磁化强度的解析和数值组合结果,包括随外加磁场的变化。