Perspectives for Spintronics in 2D Materials
arXiv:1602.07315 · doi:10.1063/1.4941712
Abstract
The past decade has been especially creative for spintronics since the (re)discovery of various two dimensional (2D) materials. Due to the unusual physical characteristics, 2D materials have provided new platforms to probe the spin interaction with other degrees of freedom for electrons, as well as to be used for novel spintronics applications. This review briefly presents the most important recent and ongoing research for spintronics in 2D materials.
16 pages, 6 figures
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- Valley polarization in MoS2 monolayers by optical pumping
- Giant Intrinsic Carrier Mobilities in Graphene and Its Bilayer
- Quantized Anomalous Hall Effect in Magnetic Topological Insulators
- New Perspectives for Rashba Spin-Orbit Coupling
- Quantum Spin Hall Effect and Topological Field Effect Transistor in Two-Dimensional Transition Metal Dichalcogenides
- The Valley Hall Effect in MoS2 Transistors
- Epitaxial Growth of Two-Dimensional Stanene
- Graphene Spintronics
- Topological Surface States Protected From Backscattering by Chiral Spin Texture
- High-precision realization of robust quantum anomalous Hall state in a hard ferromagnetic topological insulator
- Electrical Detection of Spin Transport in Lateral Ferromagnet-Semiconductor Devices
- Detecting Topological Currents in Graphene Superlattices
- Quantum Anomalous Hall Effect in HgMnTe Quantum Wells
- Electronic measurement and control of spin transport in Silicon
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- Scale-Invariant Dissipationless Chiral Transport in Magnetic Topological Insulators beyond the Two-Dimensional Limit
- Role of transparency of platinum-ferromagnet interface in determining intrinsic magnitude of spin Hall effect
- Proximity-induced ferromagnetism in graphene revealed by anomalous Hall effect
- Tunneling Spin Injection into Single Layer Graphene
- Tunneling Spin Injection into Single Layer Graphene (Supplementary Information)
- Prediction of Near-Room-Temperature Quantum Anomalous Hall Effect on Honeycomb Materials
- Magnetic Moment Formation in Graphene Detected by Scattering of Pure Spin Currents
- Controlling spin relaxation in hexagonal BN-encapsulated graphene with a transverse electric field
- Electrical detection of the spin polarization due to charge flow in the surface state of the topological insulator Bi_1.5 Sb_0.5 Te_1.7 Se_1.3
- Independent tuning of electronic properties and induced ferromagnetism in topological insulators with heterostructure approach
- Large anomalous Hall effect in ferromagnetic insulator-topological insulator heterostructures
- Electrical injection and detection of spin-polarized currents in topological insulator Bi2Te2Se
- 24 \textmu m length spin relaxation length in boron nitride encapsulated bilayer graphene
- Coupling ferroelectricity with spin-valley physics in oxide-based heterostructure
- Anomalous Hall response of topological insulators
- Towards the understanding of the origin of charge-current-induced spin voltage signals in the topological insulator BiSe
- Valley polarization assisted spin polarization in two dimensions
- Epitaxial growth and properties of La0.7Sr0.3MnO3 thin films with micrometer wide atomic terraces
Cited by in corpus (43)
- Hard magnetic properties in nanoflake van der Waals Fe3GeTe2
- Strong Rashba-Edelstein Effect-Induced Spin-Orbit Torques in Monolayer Transition-Metal Dichalcogenide/Ferromagnet Bilayers
- Quantum Materials for Spin and Charge Conversion
- Electric Field Effect in Multilayer Cr2Ge2Te6: a Ferromagnetic Two-Dimensional Material
- Observation of Inverse Edelstein Effect in Rashba-Split 2DEG between SrTiO3 and LaAlO3 at Room Temperature
- Raman spectrum of Janus transition metal dichalcogenide monolayers WSSe and MoSSe
- Thermal expansion and transport in van der Waals solids from first-principles calculations
- Two-Dimensional Materials for Energy-Efficient Spin-Orbit Torque Devices
- Gas dependent hysteresis in MoS field effect transistors
- Dynamics and Spin-Valley Locking Effects in Monolayer Transition Metal Dichalcogenides
- Intrinsic Nonlinear Hall Detection of the Néel Vector for Two-Dimensional Antiferromagnetic Spintronics
- Impurity-assisted electric control of spin-valley qubits in monolayer MoS
- Tunable Half-metallic Magnetism in Atom-thin Holey Two-dimensional CN Monolayer
- Spin Injection and Inverse Edelstein Effect in the Surface States of Topological Kondo Insulator SmB6
- Dominating Interlayer Resonant Energy Transfer in Type-II 2D Heterostructure
- Coexisting 1T/2H polymorphs, reentrant resistivity behavior, and charge distribution in MoS2-hBN 2D/2D composite thin films
- Dimensionality and Anisotropicity Dependence of Radiative Recombination in Nanostructured Phosphorene
- Reversible giant out-of-plane Rashba effect in two-dimensional Ga (= Se, Te; = Cl, Br, I) compounds for persistent spin helix
- Symmetries and hybridization in the indirect interaction between magnetic moments in MoS nanoflakes
- Nonreciprocal spin-wave dynamics in Pt/Co/W/Co/Pt multilayers
- High transport spin polarization in the van der Waals ferromagnet FeGeTe
- Direct measurement of interfacial Dzyaloshinskii-Moriya interaction at the MoS/NiFe interface
- Room-temperature superparamagnetism due to giant magnetic anisotropy in Mo defected single-layer MoS
- Multidimensional Analysis of Excitonic Spectra of Monolayers of Tungsten Disulphide: Towards Computer Aided Identification of Structural and Environmental Perturbations of 2D Materials
- Inverse Edelstein effect of the surface states of a topological insulator
- Spin-polarized electric current in silicene nanoribbons induced by atomic adsorption
- Long range of indirect exchange interaction on the edges of MoS flakes
- Quantum well confinement and competitive radiative pathways in the luminescence of black phosphorus layers
- Topological viewpoint of two-dimensional group III-V and IV-IV compounds in the presence of electric field and spin-orbit coupling by density functional theory and tight-binding model
- Band structures and invariants of two-dimensional transition metal dichalcogenide monolayers from fully-relativistic Dirac-Kohn-Sham theory using Gaussian-type orbitals
- Scanning gate microscopy mapping of edge current and branched electron flow in a transition metal dichalcogenide nanoribbon and quantum point contact
- Efficient Edelstein effects in one-atom-layer Tl-Pb compound
- Spin channel induced directional dependent spin exchange interactions between divacantly substituted Fe atoms in graphene
- Stability of edge magnetism against disorder in zigzag MoS nanoribbons
- Critical temperature of two-dimensional hydrogenated multilayer graphene-based diluted ferromagnet
- Revealing the Electronic Structure of van der Waals Antiferromagnetic NiPS through Synchrotron-Based -ARPES and Alkali Metal Dosing
- Exotic spintronic properties of transition-metal monolayers on graphyne
- Terahertz Spin-Light Coupling in Proximitized Dirac Materials
- Acoustic phonon-restricted four-phonon interactions: Impact on thermal and thermoelectric transport in monolayer h-NbN
- Bulk photogalvanic current control and gap spectroscopy in 2D hexagonal materials
- Comparing the Extrinsic Orbital Hall Effect in Centrosymmetric and Noncentrosymmetric Systems: Insights from Bilayer Transition Metal Dichalcogenides
- Diverse electronic and magnetic properties of CrS2 enabling novel strain-controlled 2D lateral heterostructure spintronic devices
- Improving Electric Contacts to Two-Dimensional Semiconductors