4 pages, 5 figuresWe present results of Quantum Monte Carlo simulations for the soft core extended bosonic Hubbard model in one dimension. By studying the superfluid density, the compressibility and the structure factor, we show that, contrary to previous claims, supersolid phases are present, similar to those recently shown to exist in two dimensions. We find the dynamic critical exponent z=1 for the insulator-superfluid transition and z=2 for the insulator-supersolid transition. The mechanism behind this difference is discussed. The simultaneous presence of two types of quasi long range order results in two soliton-like dips in the excitation spectrum
4 pagesWe use quantum Monte Carlo simulations to show the presence and study the properties of solit...
The Bose-Hubbard model describes the physics of a system of bosonic ultracold atoms in an optical la...
We numerically study the superfluid to Mott insulator transition for bosonic atoms in a one dimensio...
We report our findings on the quantum phase transitions in cold bosonic atoms in a one-dimensional...
We consider a two-species hard-core boson Hubbard model for a supersolid, where two types of bosons ...
13 pagesWe use Quantum Monte Carlo simulations and exact diagonalization to explore the phase diagra...
We use the Density Matrix Renormalization Group and the Abelian bosonization method to study the eff...
Systems of disordered interacting bosons with particle-hole symmetry can undergo a quantum phase tra...
We study the nature of the superfluid-insulator quantum phase transition in a one-dimensional system...
International audienceThe low temperature phase diagram of an assembly of Bose particles, interactin...
We investigate the zero-temperature phase diagram of interacting Bose gases in the presence of a sim...
We use the Gutzwiller ansatz and analyze the phase diagram of the extended Bose-Hubbard Hamiltonian ...
We report results of large-scale Monte Carlo simulations of superfluid-insulator transitions in diso...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
We examine the zero and finite temperature phase diagram of the extended Bose-Hubbard model on a squ...
4 pagesWe use quantum Monte Carlo simulations to show the presence and study the properties of solit...
The Bose-Hubbard model describes the physics of a system of bosonic ultracold atoms in an optical la...
We numerically study the superfluid to Mott insulator transition for bosonic atoms in a one dimensio...
We report our findings on the quantum phase transitions in cold bosonic atoms in a one-dimensional...
We consider a two-species hard-core boson Hubbard model for a supersolid, where two types of bosons ...
13 pagesWe use Quantum Monte Carlo simulations and exact diagonalization to explore the phase diagra...
We use the Density Matrix Renormalization Group and the Abelian bosonization method to study the eff...
Systems of disordered interacting bosons with particle-hole symmetry can undergo a quantum phase tra...
We study the nature of the superfluid-insulator quantum phase transition in a one-dimensional system...
International audienceThe low temperature phase diagram of an assembly of Bose particles, interactin...
We investigate the zero-temperature phase diagram of interacting Bose gases in the presence of a sim...
We use the Gutzwiller ansatz and analyze the phase diagram of the extended Bose-Hubbard Hamiltonian ...
We report results of large-scale Monte Carlo simulations of superfluid-insulator transitions in diso...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
We examine the zero and finite temperature phase diagram of the extended Bose-Hubbard model on a squ...
4 pagesWe use quantum Monte Carlo simulations to show the presence and study the properties of solit...
The Bose-Hubbard model describes the physics of a system of bosonic ultracold atoms in an optical la...
We numerically study the superfluid to Mott insulator transition for bosonic atoms in a one dimensio...