论文标题

纳米级共线多Q状态由高阶相互作用驱动

Nano-scale collinear multi-Q states driven by higher-order interactions

论文作者

Gutzeit, Mara, Kubetzka, André, Haldar, Soumyajyoti, Pralow, Henning, Wiesendanger, Roland, Heinze, Stefan, von Bergmann, Kirsten

论文摘要

复杂的磁顺序是由于磁矩之间不同相互作用的竞争而产生的。最近,对此类州的兴趣增加了,不仅是为了揭示所涉及的基本物理,而且还利用其与移动电子的独特相互作用的应用。而正是dzyaloshinskii-moriya相互作用(DMI)引起了很多关注,因为它的性质是诱导非磁性磁性秩序,包括磁场稳定的天空敏化,而交换相互作用的沮丧会使磁性趋势驱动到纳米尺度。最重要的是,多个自旋之间的相互作用可以稳定二维磁纹理,为零视野基态,称为多Q状态。在这里,我们引入了带有各种竞争原子尺度磁相的二维巡回磁铁。使用自旋偏振扫描隧道显微镜,我们观察到几个零场单轴或六边形纳米尺度磁状态。第一原理的计算以及原子自旋模型表明,这些状态通过沮丧的交换和高阶相互作用的相互作用稳定,而DMI较弱。出乎意料的是,发现不仅出现了非连续性磁状态,而且高阶相互作用也会导致共线纳米级多Q状态。

Complex magnetic order arises due to the competition of different interactions between the magnetic moments. Recently, there has been an increased interest in such states not only to unravel the fundamental physics involved, but also with regards to applications exploiting their unique interplay with moving electrons. Whereas it is the Dzyaloshinskii-Moriya interaction (DMI) that has attracted much attention because of its nature to induce non-collinear magnetic order including magnetic-field stabilized skyrmions, it is the frustration of exchange interactions that can drive magnetic order down to the nano-scale. On top of that, interactions between multiple spins can stabilize two-dimensional magnetic textures as zero-field ground states, known as multi-Q states. Here, we introduce a two-dimensional itinerant magnet with various competing atomic-scale magnetic phases. Using spin-polarized scanning tunneling microscopy we observe several zero-field uniaxial or hexagonal nano-scale magnetic states. First-principles calculations together with an atomistic spin model reveal that these states are stabilized by the interplay of frustrated exchange and higher-order interactions while the DMI is weak. Unexpectedly, it is found that not only non-collinear magnetic states arise, but that higher-order interactions can also lead to collinear nano-scale multi-Q states.

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