The optimized single-particle wave functions contained in the parameters of the Hubbard model (hopping integral t and intraatomic interaction U) are determined explicitly in the correlated state for electronic systems of various symmetries and dimensions: Hubbard chain, square and triangular lattices, and the three cubic lattices: SC, BCC, and FCC. In effect, the electronic properties of these structures as a function of the interatomic distance R are obtained. In most cases, the model parameters do not scale linearly with the lattice constant. Also, the atomic part of the total ground state energy changes with the U/t ratio and therefore should be (and is) included in the analysis. The solutions of dimensions D>1 are analyzed by utilizing ...
Systems of strongly correlated electrons are at the heart of recent developments in condensed matter...
In this paper we investigate the Hubbard model, with S-orbits on each site, for one-, two- and three...
We discuss the operatorial approach to the study of strongly correlated electron systems and show ho...
The method used earlier for analysis of correlated nanoscopic systems is extended to infinite (perio...
The optimized single-particle wave functions contained in the parame-ters of the Hubbard model (t an...
The optimized single-particle wave functions contained in the parameters of the Hubbard model (t and...
The constrained path Monte Carlo method was used to solve the Hubbard model for strongly correlated ...
A real-space method has been introduced to study the pairing problem within the generalized Hubbard ...
We introduce a new lattice version of the Correlated Basis Function ( CBF) approach for the study of...
We determine the explicit form of the single-particle Wannier functions {w$\text{}_{i}(r)}$ appearin...
International audienceThe interaction energy W [γ ] of the Hubbard model is regarded as a functional...
Strongly correlated electron systems with planar structure, like high--$% T_{c} $ superconductors, a...
A solution to the extended Hubbard Hamiltonian for the case of two-particles in an infinite one-dime...
We investigate the ground state (T = 0 K) of the one-dimensional symmetrical (n = 1) Hubbard model f...
[[abstract]]We study the extended Hubbard model in the parameter region where it exhibits supercondu...
Systems of strongly correlated electrons are at the heart of recent developments in condensed matter...
In this paper we investigate the Hubbard model, with S-orbits on each site, for one-, two- and three...
We discuss the operatorial approach to the study of strongly correlated electron systems and show ho...
The method used earlier for analysis of correlated nanoscopic systems is extended to infinite (perio...
The optimized single-particle wave functions contained in the parame-ters of the Hubbard model (t an...
The optimized single-particle wave functions contained in the parameters of the Hubbard model (t and...
The constrained path Monte Carlo method was used to solve the Hubbard model for strongly correlated ...
A real-space method has been introduced to study the pairing problem within the generalized Hubbard ...
We introduce a new lattice version of the Correlated Basis Function ( CBF) approach for the study of...
We determine the explicit form of the single-particle Wannier functions {w$\text{}_{i}(r)}$ appearin...
International audienceThe interaction energy W [γ ] of the Hubbard model is regarded as a functional...
Strongly correlated electron systems with planar structure, like high--$% T_{c} $ superconductors, a...
A solution to the extended Hubbard Hamiltonian for the case of two-particles in an infinite one-dime...
We investigate the ground state (T = 0 K) of the one-dimensional symmetrical (n = 1) Hubbard model f...
[[abstract]]We study the extended Hubbard model in the parameter region where it exhibits supercondu...
Systems of strongly correlated electrons are at the heart of recent developments in condensed matter...
In this paper we investigate the Hubbard model, with S-orbits on each site, for one-, two- and three...
We discuss the operatorial approach to the study of strongly correlated electron systems and show ho...