Center for Spintronics, Korea Institute of Science and Technology , Seoul 136-791, Korea.
Department of Materials Science and Engineering and KU-KIST Graduate School of Converging Science and Technology, Korea University , Seoul 136-701, Korea.
Nano Lett. 2016 Jan 13;16(1):62-7. doi: 10.1021/acs.nanolett.5b02732. Epub 2015 Dec 21.
Dzyaloshinskii-Moriya interaction (DMI), which arises from the broken inversion symmetry and spin-orbit coupling, is of prime interest as it leads to a stabilization of chiral magnetic order and provides an efficient manipulation of magnetic nanostructures. Here, we report all-electrical measurement of DMI using propagating spin wave spectroscopy based on the collective spin wave with a well-defined wave vector. We observe a substantial frequency shift of spin waves depending on the spin chirality in Pt/Co/MgO structures. After subtracting the contribution from other sources to the frequency shift, it is possible to quantify the DMI energy in Pt/Co/MgO systems. The result reveals that the DMI in Pt/Co/MgO originates from the interfaces, and the sign of DMI corresponds to the inversion asymmetry of the film structures. The electrical excitation and detection of spin waves and the influence of interfacial DMI on the collective spin-wave dynamics will pave the way to the emerging field of spin-wave logic devices.
Dzyaloshinskii-Moriya 相互作用(DMI)源于破坏的反转对称性和自旋轨道耦合,由于它导致手征磁有序的稳定化并提供对磁性纳米结构的有效操纵,因此备受关注。在这里,我们使用基于具有明确定义波矢的集体自旋波的传播自旋波光谱报告了 DMI 的全电测量。我们观察到在 Pt/Co/MgO 结构中,自旋波的频率根据自旋手性发生了很大的偏移。在从频率偏移的其他来源减去贡献后,可以量化 Pt/Co/MgO 系统中的 DMI 能量。结果表明,Pt/Co/MgO 中的 DMI 源于界面,并且 DMI 的符号对应于膜结构的反转不对称性。自旋波的电激发和检测以及界面 DMI 对集体自旋波动力学的影响将为新兴的自旋波逻辑器件领域铺平道路。