The intermediate and spin-liquid phase of the half-filled honeycomb Hubbard model
arXiv:1402.5622 · doi:10.1103/PhysRevB.89.165134
Abstract
We obtain the phase-diagram of the half-filled honeycomb Hubbard model with density matrix embedding theory, to address recent controversy at intermediate couplings. We use clusters from 2-12 sites and lattices at the thermodynamic limit. We identify a paramagnetic insulating state, with possible hexagonal cluster order, competitive with the antiferromagnetic phase at intermediate coupling. However, its stability is strongly cluster and lattice size dependent, explaining controver- sies in earlier work. Our results support the paramagnetic insulator as being a metastable, rather than a true, intermediate phase, in the thermodynamic limit.
References in corpus (18)
- Electric Field Effect in Atomically Thin Carbon Films
- Continuous-time Monte Carlo methods for quantum impurity models
- Quantum spin-liquid emerging in two-dimensional correlated Dirac fermions
- Absence of a Spin Liquid Phase in the Hubbard Model on the Honeycomb Lattice
- Is graphene in vacuum an insulator?
- A spin-adapted Density Matrix Renormalization Group algorithm for quantum chemistry
- Lattice field theory simulations of graphene
- Mott Physics and Topological Phase Transition in Correlated Dirac Fermions
- Self-energy-functional approach: Analytical results and the Mott-Hubbard transition
- Truncated Configuration Interaction expansions as solvers for correlated quantum impurity models and dynamical mean field theory
- Density Matrix Embedding from Broken Symmetry Lattice Mean-Fields
- Interacting Dirac Fermions on Honeycomb Lattice
- spin liquid and chiral antiferromagnetic phase in Hubbard model on the honeycomb lattice: duality between Schwinger-fermion and Schwinger-boson representations
- Spin liquids on a honeycomb lattice: Projective Symmetry Group study of Schwinger fermion mean-field theory
- Dynamical Mean-Field Theory for Quantum Chemistry
- Dynamical Mean Field Study of The Dirac Liquid
- Finite temperature semimetal-insulator transition on the honeycomb lattice
- Effective Spin Couplings in the Mott Insulator of the Honeycomb Lattice Hubbard Model
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- Unbiased Reduced Density Matrices and Electronic Properties from Full Configuration Interaction Quantum Monte Carlo
- Electron correlation in solids via density embedding theory
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- Can Density Matrix Embedding Theory with the Complete Activate Space Self-Consistent Field Solver Describe Single and Double Bond Breaking in Molecular Systems?
- Cluster size convergence of the density matrix embedding theory and its dynamical cluster formulation: a study with an auxiliary-field quantum Monte Carlo solver
- Efficient hybridization fitting for dynamical mean-field theory via semi-definite relaxation
- Cluster Density Matrix Embedding Theory for Quantum Spin Systems
- Dirac electrons in the square lattice Hubbard model with a -wave pairing field: chiral Heisenberg universality class revisited
- Density matrix embedding theory for interacting electron-phonon systems
- Five years of density matrix embedding theory
- Density-matrix based determination of low-energy model Hamiltonians from ab initio wavefunctions
- Projected Density Matrix Embedding Theory with Applications to the Two-Dimensional Hubbard Model
- Extending Density Matrix Embedding: A Static Two-Particle Theory
- Enhancing robustness and efficiency of density matrix embedding theory via semidefinite programming and local correlation potential fitting
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- Phase diagram of the square lattice Hubbard model with Rashba-type antisymmetric spin-orbit coupling
- Variational description of the ground state of the repulsive two-dimensional Hubbard model in terms of nonorthogonal symmetry-projected Slater determinants
- Spin-Orbital Density Wave and a Mott Insulator in a Two-Orbital Hubbard Model on a Honeycomb Lattice
- Entanglement spectrum as a marker for phase transitions in the density embedding theory for interacting spinless fermionic models
- Comparative study of the density matrix embedding theory for the Hubbard models
- Strong coupling approach to Mott transition of massless and massive Dirac fermions on honeycomb lattice
- Phase diagram of the Hubbard model on a honeycomb lattice: A cluster slave-spin study
- Simple embedding scheme for the spectral properties of the Single-Impurity Anderson Model
- FragPT2: Multi-Fragment Wavefunction Embedding with Perturbative Interactions
- Metal-Insulator Transition of Dirac Fermions: Variational Cluster Study
- Fragment quantum embedding using the Householder transformation: a multi-state extension based on ensembles
- Local Potential Functional Embedding Theory of Molecular Systems: Localized Orbital-Based Embedding from an Exact Density-Functional Perspective
- On the pure state -representability of density matrix embedding theory
- Kekulé valence bond order in the Hubbard model on the honeycomb lattice with possible lattice distortions for graphene
- Degenerate orbital effect in a three orbital periodic Anderson model
- Ensemble density functional theory of excited states: Exact N-centered formalism and practical opportunities
- Emergence of topological defects and spin liquid in a two-orbital spin-fermion model on the honeycomb lattice