We study a quasi-one-dimensional attractive Bose gas confined in an optical lattice with a superimposed harmonic potential by analyzing the one-dimensional Bose-Hubbard Hamiltonian of the system. Starting from the three-dimensional many-body quantum Hamiltonian, we derive strong inequalities involving the transverse degrees of freedom under which the one-dimensional Bose-Hubbard Hamiltonian can be safely used. To have a reliable description of the one-dimensional ground state, which we call a quantum bright soliton, we use the density-matrix-renormalization-group (DMRG) technique. By comparing DMRG results with mean-field (MF) ones, we find that beyond-mean-field effects become relevant by increasing the attraction between bosons or by decr...
Within the framework of a mean-field description, we investigate atomic Bose-Einstein condensates, w...
Ultracold confined one-dimensional atomic gases are predicted to support dark soliton solutions aris...
At very low temperature, a quasi-one-dimensional ensemble of atoms with attractive interactions tend...
We study a quasi-one-dimensional attractive Bose gas confined in an optical lattice with a superimpo...
We introduce a one-dimensional spatially inhomogeneous Bose-Hubbard model (BHM) with the strength of...
We study complex quantum many-body dynamics of ultracold bosons in one-dimensional optical lattice p...
In this thesis we investigate the properties of ultra-cold quantum gases in reduced dimension and th...
We study a dilute gas of attractive bosons confined in a harmonic cylinder, i.e. under cylindric con...
We numerically study the imprinting and dynamics of dark solitons in a bosonic atomic gas in a tight...
We numerically study the classical and quantum dynamics of an atomic bright soliton in a highly elon...
We investigate the dynamics of Bose-condensed bright solitons made of alkali-metal atoms with negati...
We variationally determine the dynamics of bright soliton trains composed of harmonically trapped Bo...
We variationally determine the dynamics of bright soliton trains composed of harmonically trapped Bo...
We experimentally study the excitation modes of bright matter-wave solitons in a quasi-one-dimension...
4 pagesWe use quantum Monte Carlo simulations to show the presence and study the properties of solit...
Within the framework of a mean-field description, we investigate atomic Bose-Einstein condensates, w...
Ultracold confined one-dimensional atomic gases are predicted to support dark soliton solutions aris...
At very low temperature, a quasi-one-dimensional ensemble of atoms with attractive interactions tend...
We study a quasi-one-dimensional attractive Bose gas confined in an optical lattice with a superimpo...
We introduce a one-dimensional spatially inhomogeneous Bose-Hubbard model (BHM) with the strength of...
We study complex quantum many-body dynamics of ultracold bosons in one-dimensional optical lattice p...
In this thesis we investigate the properties of ultra-cold quantum gases in reduced dimension and th...
We study a dilute gas of attractive bosons confined in a harmonic cylinder, i.e. under cylindric con...
We numerically study the imprinting and dynamics of dark solitons in a bosonic atomic gas in a tight...
We numerically study the classical and quantum dynamics of an atomic bright soliton in a highly elon...
We investigate the dynamics of Bose-condensed bright solitons made of alkali-metal atoms with negati...
We variationally determine the dynamics of bright soliton trains composed of harmonically trapped Bo...
We variationally determine the dynamics of bright soliton trains composed of harmonically trapped Bo...
We experimentally study the excitation modes of bright matter-wave solitons in a quasi-one-dimension...
4 pagesWe use quantum Monte Carlo simulations to show the presence and study the properties of solit...
Within the framework of a mean-field description, we investigate atomic Bose-Einstein condensates, w...
Ultracold confined one-dimensional atomic gases are predicted to support dark soliton solutions aris...
At very low temperature, a quasi-one-dimensional ensemble of atoms with attractive interactions tend...