Electrical spin injection, transport, and detection in graphene-hexagonal boron nitride van der Waals heterostructures: progress and perspectives
arXiv:1712.07828 · doi:10.1088/2053-1583/aac34d
Abstract
The current research in graphene spintronics strives for achieving a long spin lifetime, and efficient spin injection and detection in graphene. In this article, we review how hexagonal boron nitride (hBN) has evolved as a crucial substrate, as an encapsulation layer, and as a tunnel barrier for manipulation and control of spin lifetimes and spin injection/detection polarizations in graphene spin valve devices. First, we give an overview of the challenges due to conventional SiO substrate for spin transport in graphene followed by the progress made in hBN based graphene heterostructures. Then we discuss in detail the shortcomings and developments in using conventional oxide tunnel barriers for spin injection into graphene followed by introducing the recent advancements in using the crystalline single/bi/tri-layer hBN tunnel barriers for an improved spin injection and detection which also can facilitate two-terminal spin valve and Hanle measurements, at room temperature, and are of technological importance. A special case of bias induced spin polarization of contacts with exfoliated and chemical vapour deposition (CVD) grown hBN tunnel barriers is also discussed. Further, we give our perspectives on utilizing graphene-hBN heterostructures for future developments in graphene spintronics.
Review, Author submitted manuscript - draft; 25 pages, 8 figures
References in corpus (60)
- Electric Field Effect in Atomically Thin Carbon Films
- Two Dimensional Atomic Crystals
- 2D materials and van der Waals heterostructures
- Boron nitride substrates for high-quality graphene electronics
- Suspended Graphene: a bridge to the Dirac point
- Micrometer-scale ballistic transport in encapsulated graphene at room temperature
- Graphene Spintronics
- Charged Impurity Scattering in Graphene
- Atomic Structure of Graphene on SiO2
- Ripple Texturing of Suspended Graphene Atomic Membranes
- STM Spectroscopy of ultra-flat graphene on hexagonal boron nitride
- Hunting for Monolayer Boron Nitride: Optical and Raman Signatures
- Intrinsic and Rashba Spin-orbit Interactions in Graphene Sheets
- Spin-orbit coupling in curved graphene, fullerenes, nanotubes, and nanotube caps
- Spin-orbit gap of graphene: First-principles calculations
- Cross-sectional imaging of individual layers and buried interfaces of graphene-based heterostructures and superlattices
- Atomically thin boron nitride: a tunnelling barrier for graphene devices
- Multicomponent fractional quantum Hall effect in graphene
- Graphite and graphene as perfect spin filters
- Tunneling Spin Injection into Single Layer Graphene
- Tunneling Spin Injection into Single Layer Graphene (Supplementary Information)
- Fast pick up technique for high quality heterostructures of bilayer graphene and hexagonal boron nitride
- Graphene Spin Transistor
- Strongly anisotropic spin relaxation in graphene/transition metal dichalcogenide heterostructures at room temperature
- Theoretical prediction of perfect spin filtering at interfaces between close-packed surfaces of Ni or Co and graphite or graphene
- Opto-Valleytronic Spin Injection in Monolayer MoS2/Few-Layer Graphene Hybrid Spin Valves
- Large Proximity-Induced Spin Lifetime Anisotropy in Transition Metal Dichalcogenide/Graphene Heterostructures
- Controlling spin relaxation in hexagonal BN-encapsulated graphene with a transverse electric field
- Spin Injection into a Graphene Thin Film at Room Temperature
- Nanosecond spin lifetimes in single- and few-layer graphene-hBN heterostructures at room temperature
- Electronic spin drift in graphene field effect transistors
- Spin transport in high quality suspended graphene devices
- Graphene-Passivated Nickel as an Oxidation-Resistant Electrode for Spintronics
- Electrostatic interactions between graphene layers and their environment
- Long spin relaxation times in wafer scale epitaxial graphene on SiC(0001)
- Spin Hall effect and Weak Antilocalization in Graphene/Transition Metal Dichalcogenide Heterostructures
- Pseudospin-driven spin relaxation mechanism in graphene
- Magnetoresistive junctions based on epitaxial graphene and hexagonal boron nitride
- Theory of proximity-induced exchange coupling in graphene on hBN/(Co, Ni)
- Contact induced spin relaxation in Hanle spin precession measurements
- Defect-mediated spin relaxation and dephasing in graphene
- Optospintronics in graphene via proximity coupling
- Graphene-WS heterostructures for tunable spin injection and spin transport
- Localized states influence spin transport in epitaxial graphene
- Spin Relaxation in Single Layer Graphene with Tunable Mobility
- Voltage-controlled inversion of tunnel magnetoresistance in epitaxial Nickel/Graphene/MgO/Cobalt junctions
- Nanosecond spin relaxation times in single layer graphene spin valves with hexagonal boron nitride tunnel barriers
- Revisiting the measurement of the spin relaxation time in graphene-based devices
- Rapid and catalyst-free CVD growth of graphene on hBN
- Large-scale BN tunnel barriers for graphene spintronics
- Spin transport in high-mobility graphene on WS substrate with electric-field tunable proximity spin-orbit interaction
- Efficient spin injection into graphene through a tunnel barrier: overcoming the spin conductance mismatch
- Effect of contacts on spin lifetime measurements in graphene
- Suppression of contact-induced spin dephasing in graphene/MgO/Co spin-valve devices by successive oxygen treatments
- One-dimensional ferromagnetic edge contacts to two-dimensional graphene/h-BN heterostructures
- Enhanced spin accumulation at room temperature in graphene spin valves with amorphous carbon interfacial layers
- Spin transport in two-layer-CVD-hBN/graphene/hBN heterostructures
- Dry-transferred CVD graphene for inverted spin valve devices
- Spin relaxation 1/f noise in graphene
- A two-channel model for Spin-relaxation noise
Cited by in corpus (27)
- Van der Waals heterostructures for high-performance device applications: challenges and opportunities
- Colloquium: Spintronics in graphene and other two-dimensional materials
- Proximity exchange effects in MoSe and WSe heterostructures with CrI: twist angle, layer, and gate dependence
- Observation of spin-valley coupling induced large spin lifetime anisotropy in bilayer graphene
- Heterostructures of graphene and hBN: electronic, spin-orbit, and spin relaxation properties from first principles
- Two-dimensional flexible high diffusive spin circuits
- Giant proximity exchange and valley splitting in transition metal dichalcogenide//(Co, Ni) heterostructures
- Energy dissipation in van der Waals two-dimensional devices
- Twist Angle Controlled Collinear Edelstein Effect in van der Waals Heterostructures
- Graphene on two-dimensional hexagonal BN, AlN, and GaN: Electronic, spin-orbit, and spin relaxation properties
- Nonlocal Spin Dynamics in the Crossover from Diffusive to Ballistic Transport
- Tuneable spin injection in high-quality graphene with one-dimensional contacts
- Large spin-relaxation anisotropy in bilayer-graphene/WS heterostructures
- Unambiguous Electrical Detection of Spin-Charge Conversion in Lateral Spin-Valves
- Robust Spin Interconnect with Isotropic Spin Dynamics in Chemical Vapour Deposited Graphene Layers and Boundaries
- Sublattice symmetry breaking and ultra low energy excitations in Graphene-on-hBN Heterostructures
- Electric fields and substrates dramatically accelerate spin relaxation in graphene
- Efficient spin injection into graphene through trilayer hBN tunnel barriers
- Spin-valley collective modes of the electron liquid in graphene
- Charge transfer due to defects in hexagonal boron nitride/graphene heterostructures: an ab initio study
- Engineering metal- Dirac bands on the oxidized SiC surface
- Bias dependent spin injection into graphene on YIG through bilayer hBN tunnel barriers
- Nonlinear analog spintronics with van der Waals heterostructures
- Oblique spin injection to graphene via geometry controlled magnetic nanowires
- Electronic and Spin-Orbit Properties of hBN Encapsulated Bilayer Graphene
- Spin polarised quantised transport via one-dimensional nanowire-graphene contacts
- Large spin signal and spin rectification in folded-bilayer graphene