论文标题
手性抗铁磁铁中的bimeron簇
Bimeron Clusters in Chiral Antiferromagnets
论文作者
论文摘要
mententic bimeron是磁性天空的平面内拓扑对应物。尽管具有拓扑等效性,但它们的静电和动力学可能是不同的,从物理和旋转应用程序的角度来看,它们具有吸引力。在这项工作中,我们研究了一种具有界面dzyaloshinskii-moriya相互作用(DMI)的抗铁磁(AFM)薄膜,并将AFM Bimeron簇作为拓扑质学的一种新形式。 Bimerons作为通用的AFM孤子表现出高电流驱动的迁移率,同时以各向异性和相对论动力学为特征,分别由平面内和平面外极化激发。此外,这些自旋纹理可以吸收沿翻译方向的其他Bimeron孤子或簇,以获取多种Néel拓扑数。聚类涉及拓扑结构的重排,并引起静态和动力学特性的显着变化。 AFM Bimeron群集的优点揭示了在同一材料系统中统一多位数据创建,传输,存储甚至基于拓扑的计算的潜在途径,并可能刺激创新的Spintronic设备,从而实现新的数据操作范式。
A mgnetic bimeron is an in-plane topological counterpart of a magnetic skyrmion. Despite the topological equivalence, their statics and dynamics could be distinct, making them attractive from the perspectives of both physics and spintronic applications. In this work, we investigate an antiferromagnetic (AFM) thin film with interfacial Dzyaloshinskii-Moriya interaction (DMI), and introduce the AFM bimeron cluster as a new form of topological quasi-particle. Bimerons demonstrate high current-driven mobility as generic AFM solitons, while featuring anisotropic and relativistic dynamics excited by currents with in-plane and out-of-plane polarizations, respectively. Moreover, these spin textures can absorb other bimeron solitons or clusters along the translational direction to acquire a wide range of Néel topological numbers. The clustering involves the rearrangement of topological structures, and gives rise to remarkable changes in static and dynamical properties. The merits of AFM bimeron clusters reveal a potential path to unify multi-bit data creation, transmission, storage and even topology-based computation within the same material system, and may stimulate innovative spintronic devices enabling new paradigms of data manipulations.