4 pagesWe use quantum Monte Carlo simulations to show the presence and study the properties of solitons in the one-dimensional soft-core bosonic Hubbard model with near-neighbor interaction in traps. We show that when the half-filled charge density wave (CDW) phase is doped, solitons are produced and quasi-long-range order established. We discuss the implications of these results for the presence and robustness of this solitonic phase in Bose-Einstein condensates on one-dimensional optical lattices in traps and study the associated excitation spectrum. The density profile exhibits the coexistence of Mott insulator, CDW, and superfluid regions
We study a quasi-one-dimensional attractive Bose gas confined in an optical lattice with a superimpo...
Motivated by the recent experiment on the Bose-Einstein condensation of 52Cr atoms with long-range ...
We investigate theoretically soliton excitations and dynamics of their formation in strongly correla...
4 pagesWe use quantum Monte Carlo simulations to show the presence and study the properties of solit...
We report our findings on the quantum phase transitions in cold bosonic atoms in a one-dimensional...
We introduce a one-dimensional spatially inhomogeneous Bose-Hubbard model (BHM) with the strength of...
UnrestrictedFollowing the recent advances in controlling ultracold quantum gases that have led to th...
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...
Bright solitary-waves may be created in dilute Bose-Einstein condensates of at tractively interactin...
Within the framework of a mean-field description, we investigate atomic Bose-Einstein condensates, w...
4 pages, 5 figuresWe present results of Quantum Monte Carlo simulations for the soft core extended b...
13 pagesWe use Quantum Monte Carlo simulations and exact diagonalization to explore the phase diagra...
4 pages, 5 figuresWe study the phase coherence and visibility of trapped atomic condensates on one-d...
Using coupled equations for the bosonic and fermionic order parameters, we construct families of gap...
We study a quasi-one-dimensional attractive Bose gas confined in an optical lattice with a superimpo...
Motivated by the recent experiment on the Bose-Einstein condensation of 52Cr atoms with long-range ...
We investigate theoretically soliton excitations and dynamics of their formation in strongly correla...
4 pagesWe use quantum Monte Carlo simulations to show the presence and study the properties of solit...
We report our findings on the quantum phase transitions in cold bosonic atoms in a one-dimensional...
We introduce a one-dimensional spatially inhomogeneous Bose-Hubbard model (BHM) with the strength of...
UnrestrictedFollowing the recent advances in controlling ultracold quantum gases that have led to th...
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...
Bright solitary-waves may be created in dilute Bose-Einstein condensates of at tractively interactin...
Within the framework of a mean-field description, we investigate atomic Bose-Einstein condensates, w...
4 pages, 5 figuresWe present results of Quantum Monte Carlo simulations for the soft core extended b...
13 pagesWe use Quantum Monte Carlo simulations and exact diagonalization to explore the phase diagra...
4 pages, 5 figuresWe study the phase coherence and visibility of trapped atomic condensates on one-d...
Using coupled equations for the bosonic and fermionic order parameters, we construct families of gap...
We study a quasi-one-dimensional attractive Bose gas confined in an optical lattice with a superimpo...
Motivated by the recent experiment on the Bose-Einstein condensation of 52Cr atoms with long-range ...
We investigate theoretically soliton excitations and dynamics of their formation in strongly correla...