article Open AccessTop 1% cited
Nearly flat Chern bands in moiré superlattices
Physical review. B./Physical review. B · 2019 · Vol. 99(7)
Ya-Hui Zhang✉(Massachusetts Institute of Technology)Dan Mao(Massachusetts Institute of Technology)Yuan Cao(Massachusetts Institute of Technology)Pablo Jarillo‐Herrero(Massachusetts Institute of Technology)T. Senthil(Massachusetts Institute of Technology)
Abstract
The competition between the kinetic energy of electrons in a crystal and the inter-electron Coulomb repulsion underlies many fascinating phenomena in quantum materials. Superlattices formed from moir\'e patterns in graphene structures have emerged as tunable platforms for such physics. This paper shows that in many graphene moir\'e structures not only are the electronic bands narrow enough for Coulomb interaction to be important, but they are also topologically nontrivial. This setting of a strong correlated partially filled topological band promises to lead to many novel phenomena.
Topological Materials and PhenomenaQuantum many-body systemsAdvanced Operator Algebra ResearchMoiré patternSuperlatticeMaterials scienceOpticsCondensed matter physicsGeometryPhysicsOptoelectronicsMathematics
Funding
- National Science Foundation
- Simons Foundation
- Gordon and Betty Moore Foundation
- Division of Materials Research
Citations
403
FWCI
36.65
field-weighted impact
References
44
Percentile
100%
vs. same field & year
Citations per year
References
Chern Numbers in Discretized Brillouin Zone: Efficient Method of Computing (Spin) Hall Conductances
Journal of the Physical Society of Japan · 2005 · 1,301 citations
Quantized Hall Conductance in a Two-Dimensional Periodic Potential
Physical Review Letters · 1982 · 6,711 citations
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