We have applied newly numerical schemes to study the ground-state properties of the 1D Hubbard model. Through finite-size scaling, we determine the singularity of the momentum distribution at kF and the power law decay of the spin and charge correlations in real space. Our results confirm the non-Fermi-liquid nature of the system. The model is shown to scale to the Tomonaga-Luttinger model even in the large4 regime where perturbative results are invali
We examine the one-dimensional (1D) d–p model in comparison with typical 1D models such as the 1D Hu...
We develop a nonperturbative zero-temperature theory for the dynamic response functions of interacti...
The large-distance behavior of the spin-spin correlation function of the one-dimensional repulsive H...
We perform a rigorous computation of the spin and charge density correlations of the 1d repulsive Hu...
We give the first rigorous (non perturbative) proof of Luttinger liquid behavior in the one dimensio...
We investigate numerically the ground state phase diagram of the one-dimensional extended H...
Since the advent of high-$T_c$ cuprate superconductors in 1986, strongly correlated electron systems...
We present very general techniques for investigating strongly correlated lattice fermions in one dim...
In this paper we show that the general finite-energy spectral-function expressions provided by the p...
In this thesis, we study two different aspects of one-dimensional (1D) interacting spinless fermions...
We present a numerical study on the non-Fermi liquid behavior of a three-dimensional strongly correl...
We study the one-dimensional t-t′-J model for generic couplings using two complementary theories, th...
The critical behavior of one-dimensional interacting Fermi systems is expected to display universali...
For the one-dimensional Holstein model, we show that the relations among the scaling exponents of va...
We analyze the one-dimensional extended Hubbard model with a single static impurity by using a comp...
We examine the one-dimensional (1D) d–p model in comparison with typical 1D models such as the 1D Hu...
We develop a nonperturbative zero-temperature theory for the dynamic response functions of interacti...
The large-distance behavior of the spin-spin correlation function of the one-dimensional repulsive H...
We perform a rigorous computation of the spin and charge density correlations of the 1d repulsive Hu...
We give the first rigorous (non perturbative) proof of Luttinger liquid behavior in the one dimensio...
We investigate numerically the ground state phase diagram of the one-dimensional extended H...
Since the advent of high-$T_c$ cuprate superconductors in 1986, strongly correlated electron systems...
We present very general techniques for investigating strongly correlated lattice fermions in one dim...
In this paper we show that the general finite-energy spectral-function expressions provided by the p...
In this thesis, we study two different aspects of one-dimensional (1D) interacting spinless fermions...
We present a numerical study on the non-Fermi liquid behavior of a three-dimensional strongly correl...
We study the one-dimensional t-t′-J model for generic couplings using two complementary theories, th...
The critical behavior of one-dimensional interacting Fermi systems is expected to display universali...
For the one-dimensional Holstein model, we show that the relations among the scaling exponents of va...
We analyze the one-dimensional extended Hubbard model with a single static impurity by using a comp...
We examine the one-dimensional (1D) d–p model in comparison with typical 1D models such as the 1D Hu...
We develop a nonperturbative zero-temperature theory for the dynamic response functions of interacti...
The large-distance behavior of the spin-spin correlation function of the one-dimensional repulsive H...