论文标题
通过间接交换耦合在多层中,在零磁场上稳定在零磁场上的密集堆积的天空露骨
Densely packed skyrmions stabilized at zero magnetic field by indirect exchange coupling in multilayers
论文作者
论文摘要
磁性多层系统中天空露骨的室温稳定是不同磁相互作用之间的良好平衡的结果,即对称和反对称交换,偶极,垂直磁各向异性以及在大多数情况下,通过施加的外部场进行齐曼。这种野外驱动的稳定方法与大多数基于天际的应用程序,例如Skyrmion记忆,逻辑或神经形态计算,激发了降低或取消现场要求。在这里,我们提出了一种稳定在室温和零场上的方法,这是一种具有适度重复数量的铁磁多层的密集挤满的天空阶段。为此,我们对多层参数进行细微调整以稳定密集的天空阶段。然后,依靠层间电子耦合到具有强垂直磁各向异性和均匀磁化的相邻偏置磁层,我们证明了在零田中的稳定下,可调节的skyrmion密度在零田中稳定下。
Room-temperature stabilization of skyrmions in magnetic multilayered systems is the result of a fine balance between different magnetic interactions namely symmetric and antisymmetric exchange, dipolar, perpendicular magnetic anisotropy as well as, in most cases, Zeeman through an applied external field. Such field-driven stabilization approach is not compatible with most of the anticipated skyrmion based applications, e.g. skyrmion memories, logic or neuromorphic computing which motivates a reduction or a cancellation of field requirements. Here we present a method to stabilize at room-temperature and zero-field, a densely packed skyrmion phase in ferromagnetic multilayers with moderate number of repetitions. To this aim, we finely tune the multilayer parameters to stabilize a dense skyrmion phase. Then, relying on the interlayer electronic coupling to an adjacent bias magnetic layer with strong perpendicular magnetic anisotropy and uniform magnetization, we demonstrate the stabilization of sub-60 nm diameter skyrmion at zero-field with adjustable skyrmion density.