Koyama Tomohiro, Nakatani Yoshinobu, Ieda Jun'ichi, Chiba Daichi
Department of Applied Physics, The University of Tokyo, Bunkyo, Tokyo 113-8656, Japan.
University of Electro-Communications, Chofu, Tokyo 182-8585, Japan.
Sci Adv. 2018 Dec 21;4(12):eaav0265. doi: 10.1126/sciadv.aav0265. eCollection 2018 Dec.
We show that the electric field (EF) can control the domain wall (DW) velocity in a Pt/Co/Pd asymmetric structure. With the application of a gate voltage, a substantial change in DW velocity up to 50 m/s is observed, which is much greater than that observed in previous studies. Moreover, modulation of a DW velocity exceeding 100 m/s is demonstrated in this study. An EF-induced change in the interfacial Dzyaloshinskii-Moriya interaction (DMI) up to several percent is found to be the origin of the velocity modulation. The DMI-mediated velocity change shown here is a fundamentally different mechanism from that caused by EF-induced anisotropy modulation. Our results will pave the way for the electrical manipulation of spin structures and dynamics via DMI control, which can enhance the performance of spintronic devices.
我们表明,电场(EF)可以控制Pt/Co/Pd非对称结构中的畴壁(DW)速度。通过施加栅极电压,可以观察到DW速度有高达50 m/s的显著变化,这比先前研究中观察到的要大得多。此外,本研究还证明了DW速度超过100 m/s的调制。发现高达百分之几的EF诱导的界面Dzyaloshinskii-Moriya相互作用(DMI)变化是速度调制的起源。这里所示的DMI介导的速度变化与EF诱导的各向异性调制所引起的机制有根本不同。我们的结果将为通过DMI控制对自旋结构和动力学进行电操纵铺平道路,这可以提高自旋电子器件的性能。