Ferroelectric switching control of spin current in graphene proximitized by InSe
arXiv:2506.15269 · doi:10.1088/2752-5724/ae18ea
Abstract
By utilizing the proximity effect, we introduce a platform that exploits ferroelectric switching to modulate spin currents in graphene proximitized by ferroelectric InSe monolayer. Through first-principles calculations and tight-binding modeling, we studied the electronic structure of graphene/InSe heterostructure for twist angles of 0 and 17.5, considering both ferroelectric polarizations. We discover that switching the ferroelectric polarization reverses the sign of the charge-to-spin conversion coefficients, acting as a chirality switch of the in-plane spin texture in graphene. For the twisted heterostructure, we observed emergence of unconventional radial Rashba field for one ferroelectric polarization direction. Additionally, we demonstrated that the Rashba phase can be directly extracted from the ratio of conversion efficiency coefficients, providing a straightforward approach to characterize the in-plane spin texture in graphene. All the unique features of the studied graphene/InSe heterostructure can be experimentally detected, offering a promising approach for developing advanced spintronic devices with enhanced performance and efficiency.
9 pages, 7 figures
References in corpus (34)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Ultrahigh electron mobility in suspended graphene
- Advanced capabilities for materials modelling with Quantum ESPRESSO
- Suspended Graphene: a bridge to the Dirac point
- Out-of-plane Piezoelectricity and Ferroelectricity in Layered -In2Se3 Nano-flakes
- Spin-Orbit Proximity Effect in Graphene
- Evidence for a single-layer van der Waals multiferroic
- Purely in-plane ferroelectricity in monolayer SnS at room temperature
- Spin-Orbit Enhanced Superconductivity in Bernal Bilayer Graphene
- Large Proximity-Induced Spin Lifetime Anisotropy in Transition Metal Dichalcogenide/Graphene Heterostructures
- Proximity effects in bilayer graphene on monolayer WSe: Field-effect spin-valley locking, spin-orbit valve, and spin transistor
- Spin-orbit driven ferromagnetism at half moiré filling in magic-angle twisted bilayer graphene
- Strong electron-hole symmetric Rashba spin-orbit coupling in graphene/monolayer transition metal dichalcogenide heterostructures
- Optimal charge-to-spin conversion in graphene on transition metal dichalcogenides
- Spin Hall effect and Weak Antilocalization in Graphene/Transition Metal Dichalcogenide Heterostructures
- Two-dimensional ferroelectrics from high throughput computational screening
- Gate tunability of highly efficient spin-to-charge conversion by spin Hall effect in graphene proximitized with WSe
- Superconductivity from electronic interactions and spin-orbit enhancement in bilayer and trilayer graphene
- Charge-to-spin conversion in twisted graphene/WSe heterostructures
- Nanosecond spin relaxation times in single layer graphene spin valves with hexagonal boron nitride tunnel barriers
- Twist- and gate-tunable proximity spin-orbit coupling, spin relaxation anisotropy, and charge-to-spin conversion in heterostructures of graphene and transition-metal dichalcogenides
- A new decomposition of the Kubo-Bastin formula
- Flavor symmetry breaking in spin-orbit coupled bilayer graphene
- Twist-angle tunable spin texture in WSe/graphene van der Waals heterostructures
- Graphene on two-dimensional hexagonal BN, AlN, and GaN: Electronic, spin-orbit, and spin relaxation properties
- Unconventional charge-to-spin conversions in graphene/MoTe2 van der Waals heterostructures
- Switchable Rashba Anisotropy in Two-dimensional Hybrid Organic-Inorganic Perovskite by Hybrid Improper Ferroelectricity
- Omnidirectional spin-to-charge conversion in graphene/NbSe van der Waals heterostructures
- Emergent correlated phases in rhombohedral trilayer graphene induced by proximity spin-orbit and exchange coupling
- Resolving spin currents and spin densities generated by charge-spin interconversion in systems with reduced crystal symmetry
- Twist-angle dependent proximity induced spin-orbit coupling in graphene/topological insulator heterostructures
- Spin-orbit and exchange proximity couplings in graphene/1T-TaS heterostructure triggered by a charge density wave
- Control of charge-spin interconversion in van der Waals heterostructures with chiral charge density waves
- Swapping exchange and spin-orbit induced correlated phases in proximitized Bernal bilayer graphene