Correlated cluster mean-field theory for spin systems
arXiv:0812.4139 · doi:10.1103/PhysRevB.79.144427
Abstract
A cluster mean-field method is introduced and the applications to the Ising and Heisenberg models are demonstrated. We divide the lattice sites into clusters whose size and shape are selected so that the equivalence of all sites in a cluster is preserved. Since the strength of interactions of a cluster with its surrounding clusters is strongly dependent on the spin configuration of the central cluster itself, we include this contribution in the effective fields acting on the spins. The effects of "correlations" between clusters can be taken into account beyond the standard mean-field level, and as a result our cluster-based method gives qualitatively (and even quantitatively) correct results for the both Ising and Heisenberg models. Especially, for the Ising model on the honeycomb and square lattices, the calculated results of the critical temperature are very close (overestimated by only less than 5 %) to the exact values.
9 pages, 6 figures, 4 tables
References in corpus (4)
- The ALPS project release 1.3: open source software for strongly correlated systems
- Many-body Green's function theory of Heisenberg films
- In-plane dipole coupling anisotropy of a square ferromagnetic Heisenberg monolayer
- Green's function theory for spin-1/2 ferromagnets with an easy-plane exchange anisotropy
Cited by in corpus (36)
- From local to critical fluctuations in lattice models: a non-perturbative renormalization-group approach
- Cluster Gutzwiller method for bosonic lattice systems
- Dipolar Bosons in Triangular Optical Lattices: Quantum Phase Transitions and Anomalous Hysteresis
- Supersolid phase of the extended Bose-Hubbard model with an artificial gauge field
- Staggered superfluid phases of dipolar bosons in two-dimensional square lattices
- Bosonic quantum Hall states in single-layer two-dimensional optical lattices
- Few-body systems capture many-body physics: tensor network approach
- A case study of spin- Heisenberg model in a triangular lattice
- Spin liquid and infinitesimal-disorder-driven cluster spin glass in the kagome lattice
- Spin glass induced by infinitesimal disorder in geometrically frustrated kagome lattice
- Cluster mean field study of the Heisenberg model for CuInVO
- Role of the spin-orbit coupling in the Kugel-Khomskii model on the honeycomb lattice
- Supersolid and pair correlations of the extended Jaynes-Cummings-Hubbard model on triangular lattices
- Crossover from fast to slow dynamics in quantum Ising chains with long range interactions
- Thermodynamic description of the Ising antiferromagnet on triangular lattice with selective dilution by modified Pair Approximation method
- Inhomogeneous hard-core bosonic mixture with checkerboard supersolid phase: Quantum and thermal phase diagram
- Entanglement properties of spin models in triangular lattices
- The Quantum Cluster Variational Method and the Phase Diagram of the quantum ferromagnetic - model
- Worm quantum Monte-Carlo study of phase diagram of extended Jaynes-Cummings-Hubbard model
- Multistability in an unusual phase diagram induced by the competition between antiferromagnetic-like short-range and ferromagnetic-like long-range interactions
- Quantum phases of dipolar bosons in multilayer optical lattice
- Spin supersolid phase in coupled alternating spin chains
- Quantum correlated cluster mean-field theory applied to the transverse Ising model
- Reinvestigation of the homogeneous spin model in YbMgGaO
- Entanglement Mean Field Theory and the Curie-Weiss Law
- The Thermodynamic Limit of Spin Systems on Random Graphs
- Generalized mean field description of entanglement in dimerized spin systems
- Supersolid states in a hard-core Bose-Hubbard model on a layered triangular lattice
- Multiparticle Quantum Heat Engine: Exploring the Impact of Criticality on Efficiency
- Quantum mean-field approximation for lattice quantum models: truncating quantum correlations, and retaining classical ones
- Cluster mean-field approach with density matrix renormalization group: Application to the hard-core bosonic Hubbard model on a triangular lattice
- Cluster Entanglement Mean Field inspired approach to Criticality in Classical Systems
- Generating Generalised Ground-State Ansatzes from Few-Body Examples
- Field theoretical approach to spin models
- Spiral Phase and Phase Diagram of the =1/2 XXZ Model on the Shastry-Sutherland Lattice
- Configurational Mean-Field Reduced Transfer Matrix Method for Ising Systems