论文标题
由自旋电流和磁场驱动的铁磁双杆的动力学
Dynamics of ferromagnetic bimerons driven by spin currents and magnetic fields
论文作者
论文摘要
由两个梅隆组成的磁性bimeron是平面磁体中磁性天空的拓扑对应物,可以用作自旋设备中的非挥发性信息载体。在这里,我们在分析和数值上研究由自旋电流和磁场驱动的铁磁双膜的动力学。数值模拟表明,可以通过电流诱导的自旋扭矩在铁磁薄膜中同时创建两个具有相反拓扑数符号的Bimerons。电流诱导的自旋扭矩也可以驱动Bimeron,并且其速度分析得出,这与数值结果一致。由于具有相反拓扑数的Bimerons可以共存并具有相反的漂移方向,因此可以构建两车道的赛道以准确编码数据位。此外,研究了由磁场梯度和交替磁场引起的Bimeron的动力学。发现由交替的磁场驱动的Bimeron可以沿特定方向传播。此外,结合了合适的磁场梯度,可以完全抑制Magnus-Force诱导的横向运动,这意味着没有Skyrmion Hall效应。我们的结果对于理解Bimeron动力学很有用,并可能为构建基于Bimeron的Spintronic设备提供指南。
Magnetic bimeron composed of two merons is a topological counterpart of magnetic skyrmion in in-plane magnets, which can be used as the nonvolatile information carrier in spintronic devices. Here we analytically and numerically study the dynamics of ferromagnetic bimerons driven by spin currents and magnetic fields. Numerical simulations demonstrate that two bimerons with opposite signs of topological numbers can be created simultaneously in a ferromagnetic thin film via current-induced spin torques. The current-induced spin torques can also drive the bimeron and its speed is analytically derived, which agrees with the numerical results. Since the bimerons with opposite topological numbers can coexist and have opposite drift directions, two-lane racetracks can be built in order to accurately encode the data bits. In addition, the dynamics of bimerons induced by magnetic field gradients and alternating magnetic fields are investigated. It is found that the bimeron driven by alternating magnetic fields can propagate along a certain direction. Moreover, combining a suitable magnetic field gradient, the Magnus-force-induced transverse motion can be completely suppressed, which implies that there is no skyrmion Hall effect. Our results are useful for understanding of the bimeron dynamics and may provide guidelines for building future bimeron-based spintronic devices.