论文标题

铁磁球面上的自旋连贯性

Spin coherence on the ferromagnetic spherical surface

论文作者

Moura, A. R.

论文摘要

多年来,已经研究了平面表面上的旋转型,并且这种情况相对众所周知。但是,当我们考虑非平板表面时,缺乏信息。在本文中,我们关注球形表面铁磁模型的自旋动力学。我们使用Schwinger玻色粒形式主义来描述Spinon操作员的旋转算子的热力学。与在有限温度下无序无序的平坦二维模型相反,球形表面的曲率为Schwinger玻色子凝结提供了非零的临界温度,即使在没有外部磁场的情况下,在有限温度下的顺序也表征了秩序。然后在低温方向上分析热力学。此外,我们考虑存在静态和振荡磁场的存在,这是诱导铁磁共振的必要条件,并且我们系统地表明了所研究的模型由$ su(2)$ cooherent状态很好地描述,这提供了磁化化的正确动力学。存档的结果可用于描述多种实验,例如自旋超流体,自旋泵送和自旋转移扭矩在非惯性交界处,镁消散和球形表面上的磁性电源。

Spintronics on flat surfaces has been studied over the years, and the scenario is relatively well-known; however, there is a lack of information when we consider non-flat surfaces. In this paper, we are concerned about the spin dynamics of the ferromagnetic model on the spherical surface. We use the Schwinger bosonic formalism for describing the thermodynamics of spin operators in terms of spinon operators. Opposite to the flat two-dimensional model, which is disordered at finite temperature, the curvature of the spherical surface provides non-zero critical temperature for Schwinger boson condensation, which characterizes order at finite temperature even in the absence of external magnetic fields. The thermodynamics is then analyzed in the low-temperature regime. In addition, we consider the presence of both static and oscillating magnetic fields, the necessary condition for inducing the ferromagnetic resonance, and we show systematically that the studied model is well-described by $SU(2)$ coherent states, which provides the correct dynamics of the magnetization. The archived results can be applied for describing a diversity of experiments such as spin superfluidity, angular momentum injection by spin pumping and spin-transfer torque in non-conventional junctions, magnon dissipation, and magnetoelectronics on the spherical surface.

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