Huang Bevin, Clark Genevieve, Klein Dahlia R, MacNeill David, Navarro-Moratalla Efrén, Seyler Kyle L, Wilson Nathan, McGuire Michael A, Cobden David H, Xiao Di, Yao Wang, Jarillo-Herrero Pablo, Xu Xiaodong
Department of Physics, University of Washington, Seattle, WA, USA.
Department of Materials Science and Engineering, University of Washington, Seattle, WA, USA.
Nat Nanotechnol. 2018 Jul;13(7):544-548. doi: 10.1038/s41565-018-0121-3. Epub 2018 Apr 23.
Controlling magnetism via electric fields addresses fundamental questions of magnetic phenomena and phase transitions, and enables the development of electrically coupled spintronic devices, such as voltage-controlled magnetic memories with low operation energy. Previous studies on dilute magnetic semiconductors such as (Ga,Mn)As and (In,Mn)Sb have demonstrated large modulations of the Curie temperatures and coercive fields by altering the magnetic anisotropy and exchange interaction. Owing to their unique magnetic properties, the recently reported two-dimensional magnets provide a new system for studying these features. For instance, a bilayer of chromium triiodide (CrI) behaves as a layered antiferromagnet with a magnetic field-driven metamagnetic transition. Here, we demonstrate electrostatic gate control of magnetism in CrI bilayers, probed by magneto-optical Kerr effect (MOKE) microscopy. At fixed magnetic fields near the metamagnetic transition, we realize voltage-controlled switching between antiferromagnetic and ferromagnetic states. At zero magnetic field, we demonstrate a time-reversal pair of layered antiferromagnetic states that exhibit spin-layer locking, leading to a linear dependence of their MOKE signals on gate voltage with opposite slopes. Our results allow for the exploration of new magnetoelectric phenomena and van der Waals spintronics based on 2D materials.
通过电场控制磁性解决了磁现象和相变的基本问题,并推动了电耦合自旋电子器件的发展,例如具有低操作能量的压控磁存储器。此前对诸如(Ga,Mn)As和(In,Mn)Sb等稀磁半导体的研究表明,通过改变磁各向异性和交换相互作用,可以对居里温度和矫顽场进行大幅调制。由于其独特的磁性,最近报道的二维磁体为研究这些特性提供了一个新的体系。例如,双层三碘化铬(CrI)表现为具有磁场驱动的变磁转变的层状反铁磁体。在此,我们展示了通过磁光克尔效应(MOKE)显微镜探测到的CrI双层中磁性的静电栅极控制。在接近变磁转变的固定磁场下,我们实现了反铁磁态和铁磁态之间的压控切换。在零磁场下,我们展示了一对时间反演的层状反铁磁态,它们表现出自旋层锁定,导致其MOKE信号与栅极电压呈线性依赖关系,斜率相反。我们的结果有助于探索基于二维材料的新型磁电现象和范德华自旋电子学。