Cham Thow Min Jerald, Dorrian Reiley J, Zhang Xiyue S, Dismukes Avalon H, Chica Daniel G, May Andrew F, Roy Xavier, Muller David A, Ralph Daniel C, Luo Yunqiu Kelly
Cornell University, Ithaca, NY, 14850, USA.
Department of Chemistry, Columbia University, New York, NY, 10027, USA.
Adv Mater. 2024 Mar;36(13):e2305739. doi: 10.1002/adma.202305739. Epub 2024 Jan 4.
Magnetic van der Waals heterostructures provide a unique platform to study magnetism and spintronics device concepts in the 2D limit. Here, studies of exchange bias from the van der Waals antiferromagnet CrSBr acting on the van der Waals ferromagnet FeGeTe (FGT) are reported. The orientation of the exchange bias is along the in-plane easy axis of CrSBr, perpendicular to the out-of-plane anisotropy of the FGT, inducing a strongly tilted magnetic configuration in the FGT. Furthermore, the in-plane exchange bias provides sufficient symmetry breaking to allow deterministic spin-orbit torque switching of the FGT in CrSBr/FGT/Pt samples at zero applied magnetic field. A minimum thickness of the CrSBr of >10 nm is needed to provide a non-zero exchange bias at 30 K.
磁性范德华异质结构为在二维极限下研究磁性和自旋电子学器件概念提供了一个独特的平台。在此,报道了关于范德华反铁磁体CrSBr作用于范德华铁磁体FeGeTe(FGT)产生的交换偏置的研究。交换偏置的方向沿着CrSBr的面内易轴,垂直于FGT的面外各向异性,在FGT中诱导出强烈倾斜的磁构型。此外,面内交换偏置提供了足够的对称性破缺,使得在零外磁场下,CrSBr/FGT/Pt样品中的FGT能够实现确定性的自旋轨道转矩切换。在30 K时,需要大于10 nm的CrSBr最小厚度才能提供非零的交换偏置。