Highly efficient nonvolatile magnetization switching and multi-level states by current in single van der Waals topological ferromagnet Fe3GeTe2
arXiv:2108.13022 · doi:10.1002/adfm.202105992
Abstract
Robust multi-level spin memory with the ability to write information electrically is a long-sought capability in spintronics, with great promise for applications. Here we achieve nonvolatile and highly energy-efficient magnetization switching in a single-material device formed of van-der-Waals topological ferromagnet Fe3GeTe2, whose magnetic information can be readily controlled by a tiny current. Furthermore, the switching current density and power dissipation are about 400 and 4000 times smaller than those of the existing spin-orbit-torque magnetic random access memory based on conventional magnet/heavy-metal systems. Most importantly, we also demonstrate multi-level states, switched by electrical current, which can dramatically enhance the information capacity density and reduce computing costs. Thus, our observations combine both high energy efficiency and large information capacity density in one device, showcasing the potential applications of the emerging field of van-der-Waals magnets in the field of spin memory and spintronics.
Accepted by Advanced Functional Materials; 28 pages, 5 main figures, 4 supporting figures
References in corpus (23)
- 2D materials and van der Waals heterostructures
- Layer-dependent Ferromagnetism in a van der Waals Crystal down to the Monolayer Limit
- Discovery of intrinsic ferromagnetism in 2D van der Waals crystals
- Gate-tunable Room-temperature Ferromagnetism in Two-dimensional FeGeTe
- Magnetic 2D materials and heterostructures
- Electrical Control of 2D Magnetism in Bilayer CrI3
- Giant Tunneling Magnetoresistance in Spin-Filter van der Waals Heterostructures
- Ising-Type Magnetic Ordering in Atomically Thin FePS3
- Switching of perpendicular magnetization by spin-orbit torques in the absence of external magnetic fields
- Probing magnetism in 2D van der Waals crystalline insulators via electron tunneling
- Very Large Tunneling Magnetoresistance in Layered Magnetic Semiconductor CrI
- Room-temperature perpendicular magnetization switching through giant spin-orbit torque from sputtered BixSe(1-x) topological insulator material
- A conductive topological insulator with colossal spin Hall effect for ultra-low power spin-orbit-torque switching
- Hard magnetic properties in nanoflake van der Waals Fe3GeTe2
- Spin-orbit-torque magnetization switching of a three terminal perpendicular magnetic tunnel junction
- Néel-type skyrmion in WTe2/Fe3GeTe2 van der Waals heterostructure
- Fieldlike and antidamping spin-orbit torques in as-grown and annealed Ta/CoFeB/MgO layers
- Ultra-fast perpendicular Spin Orbit Torque MRAM
- Viewpoint: Opportunities and challenges of two-dimensional magnetic van der Waals materials: magnetic graphene?
- Bulk properties of van-der-Waals hard ferromagnet VI3
- Current Control of Magnetism in Two-Dimensional Fe3GeTe2
- Gigantic current control of coercive field and magnetic memory based on nm-thin ferromagnetic van der Waals Fe3GeTe2
- Multi-bit MRAM storage cells utilizing serially connected perpendicular magnetic tunnel junctions
Cited by in corpus (14)
- Current-induced deterministic switching of van der Waals ferromagnet at room temperature
- Efficient current-induced spin torques and field-free magnetization switching in a room-temperature van der Waals magnet
- Broken inversion symmetry in van der Waals topological ferromagnetic metal iron germanium telluride
- Room-Temperature Highly-Tunable Coercivity and Highly-Efficient Nonvolatile Multi-States Magnetization Switching by Small Current in Single 2D Ferromagnet FeGaTe
- All van der Waals three-terminal SOT-MRAM realized by topological ferromagnet Fe3GeTe2
- Highly Efficient Room-Temperature Nonvolatile Magnetic Switching by Current in Fe3GaTe2 Thin Flakes
- Novel magnetic-field-free switching behavior in vdW-magnet/oxide heterostructure
- Imaging current control of magnetization in FeGeTe with a widefield nitrogen-vacancy microscope
- Magnetoelectric effect in van der Waals magnets
- Electrical control of topological 3Q state in intercalated van der Waals antiferromagnet Cox-TaS2
- Artificially creating emergent interfacial antiferromagnetism and its manipulation in a magnetic van-der-Waals heterostructure
- Unexpected versatile electrical transport behaviors of ferromagnetic nickel films
- Edge non-collinear magnetism in nanoribbons of Fe3GeTe2 and Fe3GaTe2
- Emergent giant topological Hall effect in twisted Fe3GeTe2 metallic system