The density distribution of the one-dimensional Hubbard model in a harmonic trapping potential is investigated in order to study the effect of the confining trap. Strong superimposed oscillations are always present on top of a uniform density cloud, which show universal scaling behavior as a function of increasing interactions. An analytical formula is proposed on the basis of bosonization, which describes the density oscillations for all interaction strengths. The wavelength of the dominant oscillation changes with interaction, which indicates the crossover to a spin-incoherent regime. Using the Bethe ansatz the shape of the uniform fermion cloud is analyzed in detail, which can be described by a universal scaling form
We study strongly attractive fermions in an optical lattice superimposed by a trapping potential. We...
Dynamics of strongly interacting trapped dilute Fermi gases is investigated at zero temperature. As ...
61 pages, 6 figuresInternational audienceWe study N N spinless fermions in their ground state confin...
We investigate the ground-state properties of trapped fermion systems described by the Hubbard model...
UnrestrictedFollowing the recent advances in controlling ultracold quantum gases that have led to th...
We investigate the interplay of temperature and trap effects in cold particle systems at their quan...
20 pages, 12 figuresWe calculate the density profiles and density correlation functions of the one-d...
We calculate the density profiles and density correlation functions of the one-dimensional Bose gas ...
We use the density-matrix renormalization group method to investigate ground-state and dynamic prope...
We extend to finite temperature a Green's-function method that was previously proposed to evaluate g...
We study the quantum (zero-temperature) critical behaviors of confined particle systems described b...
Interacting two-component Fermi gases loaded in a one-dimensional (1D) lattice and subjected to a ha...
We study spin 3/2 fermionic cold atoms with attractive interactions confined in a one-dimensional o...
We experimentally and numerically investigate the sudden expansion of fermions in a homogeneous one-...
A one-dimensional world is very unusual as there is an interplay between quantum statistics and geom...
We study strongly attractive fermions in an optical lattice superimposed by a trapping potential. We...
Dynamics of strongly interacting trapped dilute Fermi gases is investigated at zero temperature. As ...
61 pages, 6 figuresInternational audienceWe study N N spinless fermions in their ground state confin...
We investigate the ground-state properties of trapped fermion systems described by the Hubbard model...
UnrestrictedFollowing the recent advances in controlling ultracold quantum gases that have led to th...
We investigate the interplay of temperature and trap effects in cold particle systems at their quan...
20 pages, 12 figuresWe calculate the density profiles and density correlation functions of the one-d...
We calculate the density profiles and density correlation functions of the one-dimensional Bose gas ...
We use the density-matrix renormalization group method to investigate ground-state and dynamic prope...
We extend to finite temperature a Green's-function method that was previously proposed to evaluate g...
We study the quantum (zero-temperature) critical behaviors of confined particle systems described b...
Interacting two-component Fermi gases loaded in a one-dimensional (1D) lattice and subjected to a ha...
We study spin 3/2 fermionic cold atoms with attractive interactions confined in a one-dimensional o...
We experimentally and numerically investigate the sudden expansion of fermions in a homogeneous one-...
A one-dimensional world is very unusual as there is an interplay between quantum statistics and geom...
We study strongly attractive fermions in an optical lattice superimposed by a trapping potential. We...
Dynamics of strongly interacting trapped dilute Fermi gases is investigated at zero temperature. As ...
61 pages, 6 figuresInternational audienceWe study N N spinless fermions in their ground state confin...