Temperature and bath size in exact diagonalization dynamical mean field theory
arXiv:1109.0158 · doi:10.1088/0953-8984/24/5/053201
Abstract
DMFT combined with finite-T exact diagonalization is one of the methods to describe electronic properties of strongly correlated materials. Because of the rapid growth of the Hilbert space, the size of the finite bath used to represent the infinite lattice is severely limited. In view of the increasing interest in the effect of multi-orbital and multi-site Coulomb correlations in transition metal oxides, high-Tc cuprates, iron-based pnictides, organic crystals, etc., it is appropriate to explore the range of temperatures and bath sizes in which ED provides accurate results for various system properties. The bath must be large enough to achieve a sufficiently dense level spacing, so that useful spectral information can be derived, especially close to the Fermi-level. For an adequate projection of the lattice Green's function onto a finite bath, the choice of the temperature is crucial. The role of these two key ingredients in ED DMFT is discussed for a wide variety of systems in order to establish the domain of applicability of this approach. Three criteria are used to illustrate the accuracy of the results: (i) the convergence of the self-energy with bath size, (ii) quality of the discretization of the bath Green's function, and (iii) comparisons with complementary results obtained via CTQMC DMFT. The materials comprise a variety of three- and five-orbital systems, as well as single-band Hubbard models for two-dimensional triangular, square and honeycomb lattices, where non-local Coulomb correlations are important. The main conclusion from these examples is that a larger number of correlated orbitals or sites requires a smaller number of bath levels. Down to temperatures of 5 to 10 meV (for typical band widths W=2 eV) two bath levels per correlated impurity orbital or site are usually adequate.
Topical Review: 29 pages, 30 figures (extended version: 5 figures added)
References in corpus (38)
- Continuous-time Monte Carlo methods for quantum impurity models
- The numerical renormalization group method for quantum impurity systems
- Quantum spin-liquid emerging in two-dimensional correlated Dirac fermions
- Mott Transition from a Spin Liquid to a Fermi Liquid in the Spin-Frustrated Organic Conductor kappa-(ET)2Cu2(CN)3
- Cluster Dynamical Mean Field Theory of the Mott Transition
- Magnetism and Charge Dynamics in Iron Pnictides
- Spin freezing transition and non-Fermi-liquid self-energy in a 3-orbital model
- The coherence-incoherence crossover and the mass-renormalization puzzles in Sr2RuO4
- Orbital-Selective Mott transition out of band degeneracy lifting
- Fermi surface and quasiparticle dynamics of Na(x)CoO2 {x=0.7} investigated by Angle-Resolved Photoemission Spectroscopy
- Evolution of electronic structure of doped Mott insulators - reconstruction of poles and zeros of Green's function
- Hund's coupling key role in multi-orbital correlations
- Momentum space anisotropy and pseudogaps: a comparative cluster dynamical mean field analysis of the doping-driven metal-insulator transition in the two dimensional Hubbard model
- ARPES on NaCoO: Fermi surface, extended flat dispersion, and unusual band splitting
- Sum-rules and bath-parametrization for quantum cluster theories
- Finite temperature Mott transition in Hubbard model on anisotropic triangular lattice
- Metal-Insulator phase diagram and orbital selectivity in 3-orbital models with rotationally invariant Hund coupling
- Antiferromagnetism and the gap of a Mott insulator: Results from analytic continuation of the self-energy
- Interacting Dirac Fermions on Honeycomb Lattice
- Subband filling and Mott transition in Ca_{2-x}Sr_xRuO_4
- Low Temperature Lanczos Method
- Cellular Dynamical Mean Field Theory for the 1D Extended Hubbard Model
- Evidence for strong electronic correlations in the spectra of SrRuO
- Bath optimization in the Cellular Dynamical Mean Field Theory
- The Mott insulator LaTiO_3 in heterostructures with SrTiO_3 is metallic
- Multisite versus multiorbital Coulomb correlations studied within finite-temperature exact diagonalization dynamical mean-field theory
- Exact Diagonalization Dynamical Mean Field Theory for Multi-Band Materials: Effect of Coulomb correlations on the Fermi surface of Na_0.3CoO_2
- Dynamical Mean Field Study of The Dirac Liquid
- Emergent Collective Modes and Kinks in Electronic Dispersions
- Non-local correlations in metals close to a charge order insulator transition
- Finite temperature semimetal-insulator transition on the honeycomb lattice
- The low-energy ARPES and heat capacity of NaCoO: A DMFT study
- Embedding approach for dynamical mean field theory of strongly correlated heterostructures
- High-energy pseudogap in degenerate Hubbard model induced via Hund coupling
- Doping-driven Mott transition in La_{1-x}Sr_xTiO_3 via simultaneous electron and hole doping of t2g subbands
- Coulomb correlations do not fill the e'_g hole pockets in Na_{0.3}CoO_2
- Charge and spin criticality for the continuous Mott transition in a two-dimensional organic conductor
- The electronic structure of the NaCoO surface
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