We consider fermions in one-dimensional superlattices (SL's), modeled by site-dependent Hubbard-U couplings arranged in a repeated pattern of repulsive (i.e., U>0) and free (U=0) sites. Density matrix renormalization group diagonalization of finite systems is used to calculate the local moment and the magnetic structure factor in the ground state. We have found four regimes for magnetic behavior: uniform local moments forming a spin-density wave (SDW), floppy local moments with short-ranged correlations, local moments on repulsive sites forming long-period SDW's superimposed with short-ranged correlations, and local moments on repulsive sites solely with long-period SDW's; the boundaries between these regimes depend on the range of electron...
Strongly correlated electron systems show a rich variety of astonishing physical phenomena. However,...
Motivated by recent experiments with ultracold fermionic atoms in optical lattices, we study finite ...
The experimental realization of time-dependent ultracold lattice systems has paved the way towards t...
We discuss the interplay between electronic correlations and an underlying superlattice structure in...
The ground-state properties of the Hubbard chain with on-site repulsion and anisotropic nearest-neig...
By using unbiased continuous-space quantum Monte Carlo simulations, we investigate the ground-state ...
We study electronic properties as a function of the six types of local environments of the octagona...
The half-filled Hubbard model on the Bethe lattice with coordination number z=3 is studied using the...
The discovery of the exchange coupling between ferromagnetic layers separated by nonmagnetic spacer ...
Naturally occuring or man-made systems displaying periodic spatial modulations of their properties o...
The authors discuss some of the fundamental properties unique to magnetic multilayers. Complex spin ...
We discuss the magnetic properties of the Hubbard model in honeycomb lattice layers. A ground state ...
. Quantum Monte Carlo simulations are used to determine the effects of disorder on magnetic, charge ...
We use tools from integrability and generalized hydrodynamics to study finite-temperature dynamics i...
International audienceWe compute the phase diagram of the one-dimensional Bose-Hubbard model with a ...
Strongly correlated electron systems show a rich variety of astonishing physical phenomena. However,...
Motivated by recent experiments with ultracold fermionic atoms in optical lattices, we study finite ...
The experimental realization of time-dependent ultracold lattice systems has paved the way towards t...
We discuss the interplay between electronic correlations and an underlying superlattice structure in...
The ground-state properties of the Hubbard chain with on-site repulsion and anisotropic nearest-neig...
By using unbiased continuous-space quantum Monte Carlo simulations, we investigate the ground-state ...
We study electronic properties as a function of the six types of local environments of the octagona...
The half-filled Hubbard model on the Bethe lattice with coordination number z=3 is studied using the...
The discovery of the exchange coupling between ferromagnetic layers separated by nonmagnetic spacer ...
Naturally occuring or man-made systems displaying periodic spatial modulations of their properties o...
The authors discuss some of the fundamental properties unique to magnetic multilayers. Complex spin ...
We discuss the magnetic properties of the Hubbard model in honeycomb lattice layers. A ground state ...
. Quantum Monte Carlo simulations are used to determine the effects of disorder on magnetic, charge ...
We use tools from integrability and generalized hydrodynamics to study finite-temperature dynamics i...
International audienceWe compute the phase diagram of the one-dimensional Bose-Hubbard model with a ...
Strongly correlated electron systems show a rich variety of astonishing physical phenomena. However,...
Motivated by recent experiments with ultracold fermionic atoms in optical lattices, we study finite ...
The experimental realization of time-dependent ultracold lattice systems has paved the way towards t...