In situ twistronics of van der Waals heterostructures
arXiv:2010.03798 · doi:10.1126/sciadv.abd3655
Abstract
In van der Waals heterostructures, electronic bands of two-dimensional (2D) materials, their nontrivial topology, and electron-electron interactions can be dramatically changed by a moire pattern induced by twist angles between different layers. Such process is referred to as twistronics, where the tuning of twist angle can be realized through mechanical manipulation of 2D materials. Here we demonstrate an experimental technique that can achieve in situ dynamical rotation and manipulation of 2D materials in van der Waals heterostructures. Using this technique we fabricated heterostructures where graphene is perfectly aligned with both top and bottom encapsulating layers of hexagonal boron nitride. Our technique enables twisted 2D material systems in one single stack with dynamically tunable optical, mechanical, and electronic properties.
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Cited by in corpus (32)
- Fabrication methods for integrating 2D materials
- The Quantum Twisting Microscope
- Determining the Twist Angle of Bilayer Graphene by Machine Learning Analysis of its Raman Spectrum
- Multi-scale lattice relaxation in general twisted trilayer graphenes
- Twist-Dependent Anisotropic Thermal Conductivity in Homogeneous MoS Stacks
- Surface ferromagnetism in rhombohedral heptalayer graphene moire superlattice
- Thermal Transport in Turbostratic Multilayer Graphene
- Controlled alignment of supermoiré lattice in double-aligned graphene heterostructures
- Fractal energy gaps and topological invariants in hBN/Graphene/hBN double moiré systems
- Higher-order Bragg gaps in the electronic band structure of bilayer graphene renormalized by recursive supermoiré potential
- Non-linear optics at twist interfaces in h-BN/SiC heterostructures
- Electric field-tunable layer polarization in graphene/boron nitride twisted quadrilayer superlattices
- Kagomé network of chiral miniband-edge states in double-aligned graphene-hexagonal boron nitride structures
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- Dimensional reduction from magnetic field in moiré superlattices
- Moiré-Induced Transport in CVD-Based Small-Angle Twisted Bilayer Graphene
- Ferroelectricity in twisted double bilayer graphene
- Twisted bilayer graphene reveals its flat bands under spin pumping
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- Adhesion and Reconstruction of Graphene/Hexagonal Boron Nitride Heterostructures: A Quantum Monte Carlo Study
- Moiré Synergy: An Emerging Game Changer by Moiré of Moiré
- Controlling Umklapp scattering in bilayer graphene moir'e superlattice
- Strain-engineered wrinkles on graphene using polymeric actuators
- Renormalized Magic Angles in Asymmetric Twisted Graphene Multilayers
- Scratching lithography, manipulation, and soldering of 2D materials using microneedle probes
- Twistraintronics in Square Moire Superlattices of Stacked Graphene Layers
- Semimetallic and semiconducting graphene-hBN multilayers with parallel or reverse stacking
- Electric field tunable bands in doubly aligned bilayer graphene hBN moire superlattice
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- Electrical probe of spin-spiral order in quantum spin Hall/spin-spiral magnet van der Waals heterostructures