Laboratory of Atomic and Solid State Physics, Cornell University , 142 Sciences Drive, Ithaca, New York 14853, United States.
Kavli Institute for Nanoscale Science, Cornell University , 420 Physical Sciences Building, Ithaca, New York 14853, United States.
Nano Lett. 2018 Feb 14;18(2):1311-1316. doi: 10.1021/acs.nanolett.7b04993. Epub 2018 Jan 19.
We present measurements of current-induced spin-orbit torques generated by NbSe, a fully metallic transition-metal dichalcogenide material, made using the spin-torque ferromagnetic resonance (ST-FMR) technique with NbSe/Permalloy bilayers. In addition to the out-of-plane Oersted torque expected from current flow in the metallic NbSe layer, we also observe an in-plane antidamping torque with torque conductivity σ ≈ 10 (ℏ/2e)(Ωm) and indications of a weak field-like contribution to the out-of-plane torque oriented opposite to the Oersted torque. Furthermore, in some samples we also measure an in-plane field-like torque with the form m̂ × ẑ, where m̂ is the Permalloy magnetization direction and ẑ is perpendicular to the sample plane. The size of this component varies strongly between samples and is not correlated with the NbSe thickness. A torque of this form is not allowed by the bulk symmetries of NbSe but is consistent with symmetry breaking by a uniaxial strain that might result during device fabrication.
我们展示了通过自旋扭矩铁磁共振(ST-FMR)技术使用 NbSe/坡莫合金双层结构测量由完全金属过渡金属二卤代物 NbSe 产生的电流诱导自旋轨道扭矩。除了预期的来自金属 NbSe 层中电流流动的面外奥斯特扭矩之外,我们还观察到具有扭矩电导率σ≈10(ℏ/2e)(Ωm)的面内反阻尼扭矩,并且存在对与奥斯特扭矩相反的面外扭矩的弱场样贡献的迹象。此外,在一些样品中,我们还测量了具有形式 m̂×ẑ的面内场样扭矩,其中 m̂是坡莫合金的磁化方向,ẑ垂直于样品平面。该分量的大小在样品之间变化很大,并且与 NbSe 的厚度没有相关性。这种形式的扭矩不被 NbSe 的体对称所允许,但与在器件制造过程中可能产生的单轴应变引起的对称破缺一致。