- Letter
Multiple insulating states due to the interplay of strong correlations and lattice geometry in a single-orbital Hubbard model
Phys. Rev. B 103, L081114 – Published 26 February, 2021
DOI: https://doi.org/10.1103/PhysRevB.103.L081114
Abstract
We report 10 ground states arising from strong correlations in the single-orbital Hubbard model on the decorated honeycomb lattice, including Dirac metals, flat-band ferromagnets, real-space Mott insulators, dimer and trimer Mott insulators, and a spin-1 Mott insulator. The rich phase diagram arises from structures within the unit cell. Hence, such states are absent on simpler lattices. We argue that such insulating phases are prevalent on decorated lattices. These are found in many materials and common in coordination polymers, providing a playground to explore this physics.
Physics Subject Headings (PhySH)
- Antiferromagnetism
- Fermions
- Ferromagnetism
- Metal-insulator transition
- Paramagnetism
- Phase diagrams
- Quantum spin liquid
- Van Hove singularity
- 2-dimensional systems
- Dirac semimetal
- Honeycomb lattice
- Inorganic compounds
- Kagome lattice
- Mott insulators
- Organometallic materials
- Strongly correlated systems
- Cluster methods
- Hubbard model
- Mean field theory
- Slave bosons