论文标题
在不存在和存在固定缺陷的情况下,抗铁磁天空的动力学
Dynamics of antiferromagnetic skyrmion in absence and presence of pinning defect
论文作者
论文摘要
关于抗铁磁(AFM)Skyrmion的动力学的理论研究对于揭示潜在物理学并了解数值和实验性观察是必不可少的。在这项工作中,我们在不存在和存在固定缺陷的情况下对自旋电流诱导的旋转电流诱导的运动进行了可靠的理论处理。对于不存在缺陷的理想AFM系统,可以根据以下概念来得出Skyrmion运动速度作为固有参数的函数,即Skyrmion配置文件与360域壁壁公式非常吻合,从而导致对Skyrmion Dynamics的明确描述。但是,对于包含缺陷的AFM晶格,可以固定天空,并且可以通过Thiele方法来描述depining域作为阻尼常数和固定强度的函数。据揭示,默认行为可能会受到天际轨迹的时间依赖性振荡的显着影响。本理论提供了一个全面的方案,用于操纵AFM Skyrmion的动态,这是基于反铁磁铁的未来Spintronic应用的信息。
A theoretical study on the dynamics of an antiferromagnetic (AFM) skyrmion is indispensable for revealing the underlying physics and understanding the numerical and experimental observations. In this work, we present a reliable theoretical treatment of the spin current induced motion of an AFM skyrmion in the absence and presence of pinning defect. For an ideal AFM system free of defect, the skyrmion motion velocity as a function of the intrinsic parameters can be derived, based on the concept that the skyrmion profile agrees well with the 360 domain wall formula, leading to an explicit description of the skyrmion dynamics. However, for an AFM lattice containing a defect, the skyrmion can be pinned and the depinning field as a function of damping constant and pinning strength can be described by the Thiele approach. It is revealed that the depinning behavior can be remarkably influenced by the time dependent oscillation of the skyrmion trajectory. The present theory provides a comprehensive scenario for manipulating the dynamics of AFM skyrmion, informative for future spintronic applications based on antiferromagnets.