Song Peng, Hsu Chuang-Han, Vignale Giovanni, Zhao Meng, Liu Jiawei, Deng Yujun, Fu Wei, Liu Yanpeng, Zhang Yuanbo, Lin Hsin, Pereira Vitor M, Loh Kian Ping
Centre for Advanced 2D Materials and Graphene Research Centre, National University of Singapore, Singapore, Singapore.
Department of Chemistry, National University of Singapore, Singapore, Singapore.
Nat Mater. 2020 Mar;19(3):292-298. doi: 10.1038/s41563-019-0600-4. Epub 2020 Feb 3.
The spin Hall effect (SHE) is usually observed as a bulk effect in high-symmetry crystals with substantial spin-orbit coupling (SOC), where the symmetric spin-orbit field imposes a widely encountered trade-off between spin Hall angle (θ) and spin diffusion length (L), and spin polarization, spin current and charge current are constrained to be mutually orthogonal. Here, we report a large θ of 0.32 accompanied by a long L of 2.2 μm at room temperature in a low-symmetry few-layered semimetal MoTe, thus identifying it as an excellent candidate for simultaneous spin generation, transport and detection. In addition, we report that longitudinal spin current with out-of-plane polarization can be generated by both transverse and vertical charge current, due to the conventional and a newly observed planar SHE, respectively. Our study suggests that manipulation of crystalline symmetries and strong SOC opens access to new charge-spin interconversion configurations and spin-orbit torques for spintronic applications.
自旋霍尔效应(SHE)通常在具有显著自旋轨道耦合(SOC)的高对称晶体中作为一种体效应被观察到,其中对称的自旋轨道场在自旋霍尔角(θ)和自旋扩散长度(L)之间带来了一种广泛存在的权衡,并且自旋极化、自旋电流和电荷电流被限制为相互正交。在此,我们报道在室温下,低对称少层半金属碲化钼(MoTe)中具有0.32的大θ以及2.2μm的长L,从而将其确定为同时进行自旋产生、输运和检测的极佳候选材料。此外,我们报道由于传统的和新观察到的面内自旋霍尔效应,横向和纵向电荷电流分别可以产生具有面外极化的纵向自旋电流。我们的研究表明,对晶体对称性和强自旋轨道耦合的操控为自旋电子学应用开启了通往新的电荷 - 自旋相互转换构型和自旋轨道转矩的途径。