论文标题

Shapiro Steps和DC和AC驱动的Skyrmions在二维周期性基板上的非线性Skyrmion Hall角度

Shapiro Steps and Nonlinear Skyrmion Hall Angles For dc and ac Driven Skyrmions on a Two Dimensional Periodic Substrate

论文作者

Vizarim, N. P., Reichhardt, C., Venegas, P. A., Reichhardt, C. J. O.

论文摘要

对于在合并的直流和交流驱动器下在二维周期性基材上移动的过度阻尼粒子,在速度力曲线中可能会出现一系列步骤,这些步骤称为shapiro spect。在这里,我们表明,对于在二维周期性障碍阵列上驱动的Skyrmions,其直流驱动器和与直流驱动的AC驱动器和AC驱动器,该系统由于Magnus力而表现出许多横向和纵向同步动力学。这些现象源于两种不同类型的相位锁定效果之间的相互作用:夏皮罗步骤和方向锁定。在某些情况下,Skyrmion Hall角度是恒定的,但纵向夏皮罗的步骤出现,而在其他机构中,由于天空锁定在障碍物lattice的不同对称性方向时,Skyrmion Hall角可以随着DC驱动而增加或减小。对于横向交流驱动器,我们发现在某些锁定的阶段中可能会发生强大的霍尔角度过大,在某些锁定阶段,天空的移动的角度比内在的大厅角度大得多。对于最强大的马格努斯力,相位锁定效应降低,并且动力学无序的动力学区域较大。我们表明,可以通过固定直流驱动器并更改AC驱动器的幅度来控制Skyrmion Hall角度。

For an overdamped particle moving over a two-dimensional periodic substrate under combined dc and ac drives, a series of steps can appear in the velocity force curves that are known as Shapiro steps. Here we show that for skyrmions driven over a two-dimensional periodic obstacle array with a dc drive and an ac drive that is either parallel or perpendicular to the dc drive, the system exhibits numerous transverse and longitudinal synchronization dynamics due to the Magnus force. These phenomena originate in interactions between two different types of phase locking effects: Shapiro steps and directional locking. In some cases, the skyrmion Hall angle is constant but longitudinal Shapiro steps appear, while in other regimes the skyrmion Hall angle can either increase or decrease with increasing dc drive during the phase locking as the skyrmion locks to different symmetry directions of the obstacle lattice. For a transverse ac drive we find that strong Hall angle overshoots can occur in certain locked phases where the skyrmion is moving at an angle that is considerably larger than the intrinsic Hall angle. For the strongest Magnus force, the phase locking effects are reduced and there are larger regions of disordered dynamics. We show that the skyrmion Hall angle can be controlled by fixing the dc drive and changing the amplitude of the ac drive.

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