We study the influence of spatial symmetries on the appearance and the number of exact flat bands (FBs) in single and bilayer systems with Dirac or quadratic band crossing points, and systematically classify all possible number of exact flat bands in systems with different point group symmetries. We find that a maximum of 6 FBs can be protected by symmetries, and show an example of 6 FBs in a system with QBCP under periodic strain field of $\mathcal{C}_{6v}$ point group symmetry. All known examples of exact FBs in single and bilayer systems fall under this classification, including chiral twisted bilayer graphene, and new examples of exact FBs are found. We show the construction of wavefunctions for the highly degenerate FBs, and prove that...
© 2020 American Physical Society. Many graphene moiré superlattices host narrow bands with nonzero v...
We consider twisted bilayer graphene on a transition metal dichalcogenide substrate, where proximity...
The study of twisted bilayer graphene (TBG) is a hot topic in condensed matter physics with special ...
We study flat bands and their topology in 2D materials with quadratic band crossing points (QBCPs) u...
© 2021 American Physical Society.Flat bands have band crossing points with other dispersive bands in...
We propose models of twisted multilayer graphene that exhibit exactly flat Bloch bands with arbitrar...
Exotic phases of matter emerge from the interplay between strong electron interactions and non-trivi...
Exotic phases of matter emerge from the interplay between strong electron interactions and non-trivi...
We investigate the electronic structure of a twisted multilayer graphene system forming a moire patt...
We study flat bands in bipartite tight-binding networks with discrete translational invariance. Chir...
A remarkable feature of the band structure of bilayer graphene at small twist angle is the appearanc...
A general theoretical technique is introduced to identify materials that host flat bands. Applying t...
Twisted bilayer graphene develops quasiflat bands at specific "magic" interlayer rotation angles thr...
We show that the Wannier obstruction and the fragile topology of the nearly flat bands in twisted bi...
©2021 American Physical SocietyWhen two identical two-dimensional (2D) periodic lattices are stacked...
© 2020 American Physical Society. Many graphene moiré superlattices host narrow bands with nonzero v...
We consider twisted bilayer graphene on a transition metal dichalcogenide substrate, where proximity...
The study of twisted bilayer graphene (TBG) is a hot topic in condensed matter physics with special ...
We study flat bands and their topology in 2D materials with quadratic band crossing points (QBCPs) u...
© 2021 American Physical Society.Flat bands have band crossing points with other dispersive bands in...
We propose models of twisted multilayer graphene that exhibit exactly flat Bloch bands with arbitrar...
Exotic phases of matter emerge from the interplay between strong electron interactions and non-trivi...
Exotic phases of matter emerge from the interplay between strong electron interactions and non-trivi...
We investigate the electronic structure of a twisted multilayer graphene system forming a moire patt...
We study flat bands in bipartite tight-binding networks with discrete translational invariance. Chir...
A remarkable feature of the band structure of bilayer graphene at small twist angle is the appearanc...
A general theoretical technique is introduced to identify materials that host flat bands. Applying t...
Twisted bilayer graphene develops quasiflat bands at specific "magic" interlayer rotation angles thr...
We show that the Wannier obstruction and the fragile topology of the nearly flat bands in twisted bi...
©2021 American Physical SocietyWhen two identical two-dimensional (2D) periodic lattices are stacked...
© 2020 American Physical Society. Many graphene moiré superlattices host narrow bands with nonzero v...
We consider twisted bilayer graphene on a transition metal dichalcogenide substrate, where proximity...
The study of twisted bilayer graphene (TBG) is a hot topic in condensed matter physics with special ...