Edge non-collinear magnetism in nanoribbons of Fe3GeTe2 and Fe3GaTe2
arXiv:2502.12356 · doi:10.1021/acs.nanolett.5c01890
Abstract
Fe3GeTe2 and Fe3GaTe2 are ferromagnetic conducting materials of van der Waals-type with unique magnetic properties that are highly promising for the development of new spintronic, orbitronic and magnonic devices. Even in the form of two-dimensional-like ultrathin films, they exhibit relatively high Curie temperature, magnetic anisotropy perpendicular to the atomic planes and multiple types of Hall effects. We explore nanoribbons made from single layers of these materials and show that they display non-collinear magnetic ordering at their edges. This magnetic inhomogeneity allows angular momentum currents to generate magnetic torques at the sample edges, regardless of their polarization direction, significantly enhancing the effectiveness of magnetization manipulation in these systems. We also demonstrate that it is possible to rapidly reverse the magnetization direction of these nanostructures by means of spin-orbit and spin-transfer torques with rather low current densities, making them quite propitious for non-volatile magnetic memory units.
5 pages, 4 figures
References in corpus (13)
- Advanced capabilities for materials modelling with Quantum ESPRESSO
- Spin Transfer Torques
- The Kernel Polynomial Method
- Highly efficient spin-orbit torque and switching of layered ferromagnet Fe3GeTe2
- Gigantic current control of coercive field and magnetic memory based on nm-thin ferromagnetic van der Waals Fe3GeTe2
- Current-induced deterministic switching of van der Waals ferromagnet at room temperature
- Highly efficient nonvolatile magnetization switching and multi-level states by current in single van der Waals topological ferromagnet Fe3GeTe2
- Efficient current-induced spin torques and field-free magnetization switching in a room-temperature van der Waals magnet
- Spin-transfer and spin-orbit torques in the Landau-Lifshitz-Gilbert equation
- First-principles Dzyaloshinskii-Moriya interaction in a non-collinear framework
- Interfacial magnetic spin Hall effect in van der Waals Fe3GeTe2/MoTe2 heterostructure
- Highly Efficient Room-Temperature Nonvolatile Magnetic Switching by Current in Fe3GaTe2 Thin Flakes
- Controllable Spin Current in van der Waals Ferromagnet Fe3GeTe2