论文标题
空间抗铁磁旋转纹理作为纳米振荡器
Spatial Antiferromagnetic Spin Texture as a Nano-Oscillator
论文作者
论文摘要
我们报告了对局部空间磁化构型的理论研究,该构型是具有垂直磁各向异性的抗铁磁铁中靶Skyrmion/Hopfion类型的固定旋转构型,然后我们解决了这种拓扑旋转文本的自我振荡的特定问题。使用能量方法,进行了对拓扑磁性自旋纹理特征不均匀性的自洽说明。在此基础上,得出了封闭的自旋构型磁化的游离振荡方程,并发现了其准经典溶液。对于薄环自旋纹理,发现振荡主音调的频率,振荡周期和相对幅度。我们首次确定了这种空间自旋纹理的振荡主要音调的拓扑质量,惯性质量和总能量。空间自旋纹理的自振荡过程被解释为磁性纳米振荡器。
We report a theoretical study of the localized spatial magnetization configuration, which is a confined spin configuration of the target skyrmion/hopfion type in an antiferromagnet with perpendicular magnetic anisotropy, and then we solve the particular problem of self-oscillations of such a topological spin texture. Using the energy approach, a self-consistent account of inhomogeneity of the characteristics of the topological magnetic spin texture was carried out. On this basis, the equation of free oscillations of the confined spin configuration magnetization was derived and its quasi-classical solution was found. For a thin ring spin texture, the frequency, period of oscillations and relative amplitude of the main tone of oscillations are found. For the first time, we determined the topological mass, inertial mass and total energy of the main tone of oscillations of such spatial spin texture. The self-oscillatory process of a spatial spin texture is interpreted as a magnetic nano-oscillator.