[[abstract]]The criteria of the ground-state stability and correlations in finite size two-component (two orbital) fermions in Hubbard-like model are obtained for an attractive potential in a strong magnetic field at half-filling and for two holes near full band filling, where it is possible to get an exact result for any dimension. The ground-state properties and density correlation functions of two holes with different masses in 1d, 2d and 3d lattices are found.[[journaltype]]國外[[incitationindex]]SCI[[booktype]]紙本[[countrycodes]]NL
An electronic Hubbard-type model with bond-charge interaction and on-site repulsion U is studied in ...
We utilize numerical linked-cluster expansions (NLCEs) and the determinantal quantum Monte Carlo alg...
We study the t-J model as a microscopic model of high-temperature superconductors. The local constra...
We investigate electronic states of the one-dimensional two-orbital Hubbard model with band splittin...
Using the numerical diagonalization method, we investigate superconductivity and related ferromagnet...
Using the numerical diagonalization method, we investigate superconductivity and related ferromagnet...
We investigate electronic states of the one-dimensional two-orbital Hubbard model with band splittin...
We study unconventional superconductivity in two-dimensional systems. Unbiased numerical calculation...
We show that for low and moderate fillings the ground state of the two-dimensional Hubbard model wit...
We present the first exact results of the ground-state energy in the two-dimensional Hubbard model o...
We propose a configuration interaction mechanism that leads to hole pairs with zero repulsion energy...
The electronic states of the two-dimensional Hubbard model are investigated by means of a 4-pole app...
The two-dimensional repulsive Hubbard model has been investigated by a variety of methods, from smal...
We have studied the Hubbard model which is a model that is used to describe the physics of strongly ...
Copyright © 2013 Takashi Yanagisawa et al. This is an open access article distributed under the Crea...
An electronic Hubbard-type model with bond-charge interaction and on-site repulsion U is studied in ...
We utilize numerical linked-cluster expansions (NLCEs) and the determinantal quantum Monte Carlo alg...
We study the t-J model as a microscopic model of high-temperature superconductors. The local constra...
We investigate electronic states of the one-dimensional two-orbital Hubbard model with band splittin...
Using the numerical diagonalization method, we investigate superconductivity and related ferromagnet...
Using the numerical diagonalization method, we investigate superconductivity and related ferromagnet...
We investigate electronic states of the one-dimensional two-orbital Hubbard model with band splittin...
We study unconventional superconductivity in two-dimensional systems. Unbiased numerical calculation...
We show that for low and moderate fillings the ground state of the two-dimensional Hubbard model wit...
We present the first exact results of the ground-state energy in the two-dimensional Hubbard model o...
We propose a configuration interaction mechanism that leads to hole pairs with zero repulsion energy...
The electronic states of the two-dimensional Hubbard model are investigated by means of a 4-pole app...
The two-dimensional repulsive Hubbard model has been investigated by a variety of methods, from smal...
We have studied the Hubbard model which is a model that is used to describe the physics of strongly ...
Copyright © 2013 Takashi Yanagisawa et al. This is an open access article distributed under the Crea...
An electronic Hubbard-type model with bond-charge interaction and on-site repulsion U is studied in ...
We utilize numerical linked-cluster expansions (NLCEs) and the determinantal quantum Monte Carlo alg...
We study the t-J model as a microscopic model of high-temperature superconductors. The local constra...