Current-induced skyrmion dynamics in a frustrated magnetic film.

X. Zhang, J. Xia, Y. Zhou, X. Liu, H. Zhang, M. Ezawa
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Abstract

The magnetic skyrmion is an exotic and versatile topological object in condensed matter physics, which promises novel applications in electronic and spintronic devices [1–2]. Recently, a rich phase diagram of an anisotropic frustrated magnet and properties of frustrated skyrmions with arbitrary vorticity and helicity were investigated [3]. Other remarkable physical properties of skyrmions in the frustrated magnetic system have also been studied theoretically [4–6]. Here, we explore the skyrmion dynamics in a frustrated magnet based on the J1-J2-J3 classical Heisenberg model explicitly by including the dipole-dipole interaction [7]. The skyrmion energy acquires a helicity dependence due to the dipole-dipole interaction, resulting in the current-induced translational motion with a fixed helicity. The lowest-energy states are the degenerate Bloch-type states, which can be used for building the binary memory. By increasing the driving current, the helicity locking-unlocking transition occurs, where the translational motion changes to the rotational motion. Furthermore, we demonstrate that two skyrmions can spontaneously form a bound state. The separation of the bound state forced by a driving current is also studied. In addition, we show the annihilation of a pair of skyrmion and antiskyrmion. Our results reveal the distinctive frustrated skyrmions may enable new applications.
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受挫磁膜中电流诱导的粒子动力学。
磁skyrmion是凝聚态物理中一种奇异的、通用的拓扑对象,在电子和自旋电子器件中有新的应用前景[1-2]。最近,研究了各向异性受挫磁体的富相图和具有任意涡度和螺旋度的受挫磁体的性质。挫折磁系统中skyrmions的其他显著物理特性也从理论上进行了研究[4-6]。本文在J1-J2-J3经典海森堡模型的基础上,通过引入偶极子-偶极子相互作用[7],明确地探讨了受挫磁体中的skyrmion动力学。由于偶极-偶极相互作用,斯基米子能量获得螺旋度依赖,导致电流诱导的具有固定螺旋度的平移运动。最低能态是简并布洛赫型态,可用于构建二进制存储器。通过增加驱动电流,发生螺旋锁-解锁转变,平移运动转变为旋转运动。此外,我们还证明了两个skyrmions可以自发地形成束缚态。研究了驱动电流对束缚态分离的影响。此外,我们还展示了一对斯基子和反斯基子的湮灭。我们的研究结果表明,独特的受挫天空可能会带来新的应用。
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