Stiehl Gregory M, MacNeill David, Sivadas Nikhil, El Baggari Ismail, Guimarães Marcos H D, Reynolds Neal D, Kourkoutis Lena F, Fennie Craig J, Buhrman Robert A, Ralph Daniel C
Department of Physics , Cornell University , Ithaca , New York 14853 , United States.
School of Applied and Engineering Physics , Cornell University , Ithaca , New York 14853 , United States.
ACS Nano. 2019 Feb 26;13(2):2599-2605. doi: 10.1021/acsnano.8b09663. Epub 2019 Jan 16.
We report measurements of current-induced torques in heterostructures of Permalloy (Py) with TaTe, a transition-metal dichalcogenide (TMD) material possessing low crystal symmetry, and observe a torque component with Dresselhaus symmetry. We suggest that the dominant mechanism for this Dresselhaus component is not a spin-orbit torque but rather the Oersted field arising from a component of current that flows perpendicular to the applied voltage due to resistance anisotropy within the TaTe. This type of transverse current is not present in wires made from a single uniform layer of a material with resistance anisotropy but will result whenever a material with resistance anisotropy is integrated into a heterostructure with materials having different resistivities, thereby producing a spatially nonuniform pattern of current flow. This effect will therefore influence measurements in a wide variety of heterostructures incorporating 2D TMD materials and other materials with low crystal symmetries.
我们报告了在坡莫合金(Py)与TaTe(一种具有低晶体对称性的过渡金属二硫属化物(TMD)材料)的异质结构中电流感应转矩的测量结果,并观察到具有 Dresselhaus 对称性的转矩分量。我们认为,这种 Dresselhaus 分量的主要机制不是自旋轨道转矩,而是由于 TaTe 内的电阻各向异性,由垂直于施加电压流动的电流分量产生的奥斯特场。这种横向电流不存在于由具有电阻各向异性的单一均匀材料层制成的导线中,但只要将具有电阻各向异性的材料与具有不同电阻率的材料集成到异质结构中,就会产生这种横向电流,从而产生空间上不均匀的电流流动模式。因此,这种效应将影响包含二维 TMD 材料和其他具有低晶体对称性材料的各种异质结构中的测量。