A GW+RPA perturbation framework built on Hartree-Fock is applied to hBN-aligned rhombohedral pentalayer graphene and magic-angle twisted bilayer graphene, producing phase diagrams and spectra that match experiments and predicting a nematic metal ground state at charge neutrality in MATBG.
Title resolution pending
2 Pith papers cite this work. Polarity classification is still indexing.
2
Pith papers citing it
representative citing papers
DFT study of relaxed twisted bilayer graphene structures and bands for twist angles down to 0.987 degrees, with good agreement to continuum models except for a small angle offset.
citing papers explorer
-
General Many-Body Perturbation Framework for Moir\'e Systems
A GW+RPA perturbation framework built on Hartree-Fock is applied to hBN-aligned rhombohedral pentalayer graphene and magic-angle twisted bilayer graphene, producing phase diagrams and spectra that match experiments and predicting a nematic metal ground state at charge neutrality in MATBG.
-
Twisted bilayer graphene from first-principles: structural and electronic properties
DFT study of relaxed twisted bilayer graphene structures and bands for twist angles down to 0.987 degrees, with good agreement to continuum models except for a small angle offset.