论文标题

磁质质地的层影响磁性磁性不对称的磁铁

Layer effects on the magnetic textures in magnets with local inversion asymmetry

论文作者

van Walsem, Etienne, Duine, Rembert A., Guimarães, Marcos H. D.

论文摘要

局部反转对称性破裂的磁铁是手性磁纹理(例如天空和旋转螺旋)的有趣候选者。这些磁铁的特性是,每个后续层都可以具有源自局部反转对称性破坏的不同Dzyaloshniskii-Moriya相互作用(DMI)。鉴于此类系统的新候选者正在出现,并具有范德华晶体和磁性多层系统,因此研究手性磁纹理的依赖于层的数量以及它们之间的耦合是很有趣的。在本文中,我们用经典的海森堡自旋模型对磁性层进行建模,其中DMI的符号为每个连续层交替。我们使用Monte Carlo模拟检查手性磁纹理,并表明磁性螺旋的螺距受层间耦合和层数的影响。我们观察到层数中的偶数效应,在该层数中,我们观察到对均匀层数的自旋螺旋的抑制。我们通过在具有强耦合层的系统中提出净DMI来为我们的发现提供了解释。我们的结果可用于根据螺旋波长的可调性来确定具有已知层层的系统中的DMI,并确定新技术。

Magnets with broken local inversion symmetries are interesting candidates for chiral magnetic textures such as skyrmions and spin spirals. The property of these magnets is that each subsequent layer can possess a different Dzyaloshniskii-Moriya interaction (DMI) originating from the local inversion symmetry breaking. Given that new candidates of such systems are emerging, with the Van der Waals crystals and magnetic multilayer systems, it is interesting to investigate how the chiral magnetic textures depend on the number of layers and the coupling between them. In this article, we model the magnetic layers with a classical Heisenberg spin model, where the sign of the DMI alternates for each consecutive layer. We use Monte Carlo simulations to examine chiral magnetic textures and show that the pitch of magnetic spirals is influenced by the interlayer coupling and the number of layers. We observe even-odd effects in the number of layers, where we observe a suppression of the spin spirals for even layer numbers. We give an explanation for our findings by proposing a net DMI in systems with strongly coupled layers. Our results can be used to determine the DMI in systems with a known number of layers, and for new technologies based on the tunability of the spiral wave length.

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