Department of Applied Physics, Center for NanoMaterials, Eindhoven University of Technology , PO Box 513, 5600 MB Eindhoven, The Netherlands.
Department of Physics, Inha University , Incheon 22212, Republic of Korea.
Nano Lett. 2016 Jul 13;16(7):4438-46. doi: 10.1021/acs.nanolett.6b01593. Epub 2016 Jun 29.
The interfacial Dzyaloshinskii-Moriya interaction (DMI) is intimately related to the prospect of superior domain-wall dynamics and the formation of magnetic skyrmions. Although some experimental efforts have been recently proposed to quantify these interactions and the underlying physics, it is still far from trivial to address the interfacial DMI. Inspired by the reported tilt of the magnetization of the side edge of a thin film structure, we here present a quasi-static, straightforward measurement tool. By using laterally asymmetric triangular-shaped microstructures, it is demonstrated that interfacial DMI combined with an in-plane magnetic field yields a unique and significant shift in magnetic hysteresis. By systematic variation of the shape of the triangular objects combined with a droplet model for domain nucleation, a robust value for the strength and sign of interfacial DMI is obtained. This method gives immediate and quantitative access to DMI, enabling a much faster exploration of new DMI systems for future nanotechnology.
界面 Dzyaloshinskii-Moriya 相互作用(DMI)与优越的畴壁动力学和磁 skyrmion 的形成密切相关。尽管最近已经提出了一些实验方法来量化这些相互作用和潜在的物理机制,但要解决界面 DMI 问题仍然不容易。受报道的薄膜结构侧边磁化倾斜的启发,我们在这里提出了一种准静态的、直接的测量工具。通过使用横向不对称的三角形微结构,证明了界面 DMI 与平面内磁场相结合,会导致磁滞回线产生独特且显著的移动。通过系统地改变三角形物体的形状,并结合畴核的液滴模型,我们获得了界面 DMI 的强度和符号的可靠值。这种方法可以直接、定量地获取 DMI,从而更快地探索新的 DMI 系统,以用于未来的纳米技术。