Macroscopic Tunneling Probe of Moiré Spin Textures in Twisted CrI
arXiv:2406.08556 · doi:10.1038/s41467-024-49261-6
Abstract
Various noncollinear spin textures and magnetic phases have been predicted in twisted two-dimensional CrI due to competing ferromagnetic (FM) and antiferromagnetic (AFM) interlayer exchange from moiré stacking - with potential spintronic applications even when the underlying material possesses a negligible Dzyaloshinskii-Moriya or dipole-dipole interaction. Recent measurements have shown evidence of coexisting FM and AFM layer order in small-twist-angle CrI bilayers and double bilayers. Yet, the nature of the magnetic textures remains unresolved and possibilities for their manipulation and electrical readout are unexplored. Here, we use tunneling magnetoresistance to investigate the collective spin states of twisted double-bilayer CrI under both out-of-plane and in-plane magnetic fields together with detailed micromagnetic simulations of domain dynamics based on magnetic circular dichroism. Our results capture hysteretic and anisotropic field evolutions of the magnetic states and we further uncover two distinct non-volatile spin textures (out-of-plane and in-plane domains) at 1° twist angle, with a different global tunneling resistance that can be switched by magnetic field.
18 pages, 5 figures
References in corpus (8)
- Probing magnetism in 2D materials at the nanoscale with single spin microscopy
- Superlattice-induced insulating states and valley-protected orbits in twisted bilayer graphene
- Evolution of interlayer and intralayer magnetism in three atomically thin chromium trihalides
- Layer-Resolved Magnetic Proximity Effect in van der Waals Heterostructures
- Evidence of Noncollinear Spin Texture in Magnetic Moiré Superlattices
- Magnetization textures in twisted bilayer 2D CrX (X=Br, I)
- Electrically tunable moiré magnetism in twisted double bilayers of chromium triiodide
- Whirling interlayer fields as a source of stable topological order in moiré CrI3
Cited by in corpus (4)
- Magnetic Anisotropy in Two-dimensional van der Waals Magnetic Materials and Their Heterostructures: Importance, Mechanisms, and Opportunities
- Magnetic and ferroelectric phase diagram of twisted CrI layers
- Twist Engineering of Anisotropic Excitonic and Optical Properties of a Two-Dimensional Magnetic Semiconductor
- Magnetic Moiré Systems: a review