We present different numerical calculations based on variational quantum Monte Carlo simulations supporting a ferromagnetic ground state for finite and small hole densities in the two-dimensional infinite-U Hubbard model. Moreover, by studying the energies of different total spin sectors, these calculations strongly suggest that the paramagnetic phase is unstable against a phase with a partial polarization for large hole densities delta similar to 0.40 with evidence for a second-order transition to the paramagnetic large doping phase
We study the magnetic properties of itinerant quantum magnetic particles, described by a generalized...
The infinite U Hubbard model is investigated to envisage the derivation of effective action for spin...
We identify a "kF instability" of the Nagaoka ferromagnetic state of the U = ∞ Hubbard model. We sho...
We present different numerical calculations based on variational quantum Monte Carlo simulations sup...
2noWe present different numerical calculations based on variational quantum Monte Carlo simulations ...
4noUsing a quantum Monte Carlo technique, we provide strong evidence for the stability of a saturate...
Using a quantum Monte Carlo technique, we provide strong evidence for the stability of a saturated ...
Using a quantum Monte Carlo technique, we provide strong evidence for the stability of a saturated ...
Within the t – U model, the so – called Hubbard model, a lattice of electrons is not completely ferr...
We study the infinite-U Hubbard model on ladders of two, four, and six legs with nearest- (t) and ne...
The Hubbard model on fcc-type lattices is studied in the dynamical mean-field theory of infinite spa...
We analyze the possible occurrence of ferromagnetism in the Hubbard model, by means of an exact diag...
The diamagnetic susceptibility of the infinity-U Hubbard model is investigated in one and two dimens...
The diamagnetic susceptibility of the infinity-U Hubbard model is investigated in one and two dimens...
We study the magnetic properties of itinerant quantum magnetic particles, described by a generalized...
We study the magnetic properties of itinerant quantum magnetic particles, described by a generalized...
The infinite U Hubbard model is investigated to envisage the derivation of effective action for spin...
We identify a "kF instability" of the Nagaoka ferromagnetic state of the U = ∞ Hubbard model. We sho...
We present different numerical calculations based on variational quantum Monte Carlo simulations sup...
2noWe present different numerical calculations based on variational quantum Monte Carlo simulations ...
4noUsing a quantum Monte Carlo technique, we provide strong evidence for the stability of a saturate...
Using a quantum Monte Carlo technique, we provide strong evidence for the stability of a saturated ...
Using a quantum Monte Carlo technique, we provide strong evidence for the stability of a saturated ...
Within the t – U model, the so – called Hubbard model, a lattice of electrons is not completely ferr...
We study the infinite-U Hubbard model on ladders of two, four, and six legs with nearest- (t) and ne...
The Hubbard model on fcc-type lattices is studied in the dynamical mean-field theory of infinite spa...
We analyze the possible occurrence of ferromagnetism in the Hubbard model, by means of an exact diag...
The diamagnetic susceptibility of the infinity-U Hubbard model is investigated in one and two dimens...
The diamagnetic susceptibility of the infinity-U Hubbard model is investigated in one and two dimens...
We study the magnetic properties of itinerant quantum magnetic particles, described by a generalized...
We study the magnetic properties of itinerant quantum magnetic particles, described by a generalized...
The infinite U Hubbard model is investigated to envisage the derivation of effective action for spin...
We identify a "kF instability" of the Nagaoka ferromagnetic state of the U = ∞ Hubbard model. We sho...