Ab initio two-dimensional multiband low-energy models of EtMe_3Sb[Pd(dmit)_2]_2 and κ-(BEDT-TTF)_2Cu(NCS)_2 with comparisons to single-band models
arXiv:1208.3954 · doi:10.1103/PhysRevB.86.205117
Abstract
We present ab initio two-dimensional extended Hubbard-type multiband models for EtMe_3Sb[Pd(dmit)_2]_2 and κ-(BEDT-TTF)_2Cu(NCS)_2, after a downfolding scheme based on the constrained random phase approximation (cRPA) and maximally-localized Wannier orbitals, together with the dimensional downfolding. In the Pd(dmit)_2 salt, the antibonding state of the highest occupied molecular orbital (HOMO) and the bonding/antibonding states of the lowest unoccupied molecular orbital (LUMO) are considered as the orbital degrees of freedom, while, in the κ-BEDT-TTF salt, the HOMO-antibonding/bonding states are considered. Accordingly, a three-band model for the Pd(dmit)_2 salt and a two-band model for the κ-(BEDT-TTF) salt are derived. We derive single band models for the HOMO-antibonding state for both of the compounds as well.
10 pages, 9 figures, 3 tables; submitted to Physical Review B
References in corpus (7)
- Electronic Structure Calculation by First Principles for Strongly Correlated Electron Systems
- Ab initio Derivation of Low-energy Model for Iron-Based Superconductors LaFeAsO and LaFePO
- Novel Pauli-paramagnetic quantum phase in a Mott insulator
- Mott Transition in a Valence Bond Solid Insulator with a Triangular Lattice
- Single-Component Molecular Metals as Multiband π-d Systems
- Ab initio Low-Dimensional Physics Opened Up by Dimensional Downfolding: Application to LaFeAsO
- Multi-Orbital Molecular Compound (TTM-TTP)I_3: Effective Model and Fragment Decomposition
Cited by in corpus (19)
- Importance of Spin-Orbit Coupling in Organic BEDT-TTF and BEDT-TSF Salts
- Molecular Quantum Materials: Electronic Phases and Charge Dynamics in Two-Dimensional Organic Solids
- Cation Dependence of the Electronic States in Molecular Triangular Lattice System β'-X[Pd(dmit)_2]_2: A First-principles study
- Spin liquid phase in the semiclassical theory of the Heisenberg model on an anisotropic triangular lattice with ring exchange
- Unconventional dual 1D-2D quantum spin liquid revealed by studies on organic solids family
- Ingredients for Generalized Models of -Phase Organic Charge-Transfer Salts: A Review
- First-principles study of hydrogen-bonded molecular conductor -H(Cat-EDT-TTF/ST)
- Fragment Model Study of Molecular Multi-Orbital System [Pd(dmit)]
- Spin Vortex Crystal Order in Organic Triangular Lattice Compound
- Mott transition and magnetism on the anisotropic triangular lattice
- Comprehensive investigation of the phase diagram of quasi-one-dimensional molecular solids
- Gap opening mechanism for correlated Dirac electrons in organic compounds -(BEDT-TTF)I and -(BEDT-TSeF)I
- Enhancement of the thermoelectric power by electronic correlations in bad metals: a study of the Kelvin formula
- Coherent heavy charge carriers in an organic conductor near the bandwidth-controlled Mott transition
- Transition of a prestine Mott insulator to a correlated Fermi liquid: Pressure-dependent optical investigations of a quantum spin liquid
- Quantum many-body solver using artificial neural networks and its applications to strongly correlated electron systems
- Quasi-one-dimensional Spin Dynamics in a Molecular Spin Liquid System
- Combined X-ray diffraction, electrical resistivity, and study of (TMTTF)PF under pressure: implications to the unified phase diagram
- -wave Superconductivity in the Hubbard model on the isotropic triangular lattice and a possibility of the chiral pairing as a quasi-stable state