Structure of twisted and buckled bilayer graphene
arXiv:1611.01000 · doi:10.1088/2053-1583/4/1/015018
Abstract
We study the atomic structure of twisted bilayer graphene, with very small mismatch angles (), a topic of intense recent interest. We use simulations, in which we combine a recently presented semi-empirical potential for single-layer graphene, with a new term for out-of-plane deformations, [Jain et al., J. Phys. Chem. C, 119, 2015] and an often-used interlayer potential [Kolmogorov et al., Phys. Rev. B, 71, 2005]. This combination of potentials is computationally cheap but accurate and precise at the same time, allowing us to study very large samples, which is necessary to reach very small mismatch angles in periodic samples. By performing large scale atomistic simulations, we show that the vortices appearing in the Moiré pattern in the twisted bilayer graphene samples converge to a constant size in the thermodynamic limit. Furthermore, the well known sinusoidal behavior of energy no longer persists once the misorientation angle becomes very small (). We also show that there is a significant buckling after the relaxation in the samples, with the buckling height proportional to the system size. These structural properties have direct consequences on the electronic and optical properties of bilayer graphene.
8 figures, 14 pages, Accepted for publication in 2D Materials
References in corpus (14)
- The structure of suspended graphene sheets
- Atomic Structure of Graphene on SiO2
- Flat Bands in Slightly Twisted Bilayer Graphene
- Single Layer Behavior and Its Breakdown in Twisted Graphene Layers
- High-Resolution Scanning Tunneling Microscopy Imaging of Mesoscopic Graphene Sheets on an Insulating Surface
- On the roughness of single- and bi-layer graphene membranes
- Electron scattering on microscopic corrugations in graphene
- Topologically Protected Zero Modes in Twisted Bilayer Graphene
- Optical Conductivity of Twisted Bilayer Graphene
- Anomalous Dynamical Behavior of Freestanding Graphene Membranes
- Graphene on boron-nitride: Moiré pattern in the van der Waals energy
- Electronic conductance of twisted bilayer nanoribbon flakes
- Membrane amplitude and triaxial stress in twisted bilayer graphene deciphered using first-principles directed elasticity theory and scanning tunneling microscopy
- Boundaries Determine the Formation Energies of Lattice Defects in Two-Dimensional Buckled Materials
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