We propose a variational approximation to the ground state energy of a one-dimensional gas of interacting bosons on the continuum based on the Bethe ansatz ground state wave function of the Lieb-Liniger model. We apply our variational approximation to a gas of dipolar bosons in the single mode approximation and obtain its ground state energy per unit length. This allows for the calculation of the Tomonaga-Luttinger exponent as a function of density and the determination of the structure factor at small momenta. Moreover, in the case of attractive dipolar interaction, an instability is predicted at a critical density, which could be accessed in lanthanide atoms
We present a quantum Monte Carlo study of two-dimensional dipolar Bose gases in ...
We study the ground state properties of interacting Fermi gases in the dilute regime, in three dimen...
We study static properties and the dynamical structure factor of zero-temperature dilute bosons inte...
We propose a variational approximation to the ground state energy of a one-dimensional gas of intera...
We present a simple approximation scheme for the solution of the integral equations resulting from t...
We study the ground-state properties and excitation spectrum of the Lieb-Liniger model, i.e. the on...
A new variational scheme based on a modified Bethe-Peierls method is used to study the ground state ...
We employ an exact Bethe ansatz solution to study the repulsive Bose–Hubbard dimer model. Using a co...
We study the ground state of few bosons with repulsive dipole-dipole interaction in a quasi-one-dime...
We propose a one-dimensional model of spinor bosons with SU(2) symmetry and a two-body finite-range ...
The energy and structure of a dilute hard-disks Bose gas are studied in the framework of a variation...
We study a gas of bosonic dipolar atoms in the presence of a transverse harmonic trapping potential ...
The one-dimensional gas of bosons interacting via a repulsive contact potential was solved long ago ...
International audienceProbing the radial collective oscillation of a trapped quantum system is an ac...
We present a quantum Monte Carlo study of two-dimensional dipolar Bose gases in ...
We study the ground state properties of interacting Fermi gases in the dilute regime, in three dimen...
We study static properties and the dynamical structure factor of zero-temperature dilute bosons inte...
We propose a variational approximation to the ground state energy of a one-dimensional gas of intera...
We present a simple approximation scheme for the solution of the integral equations resulting from t...
We study the ground-state properties and excitation spectrum of the Lieb-Liniger model, i.e. the on...
A new variational scheme based on a modified Bethe-Peierls method is used to study the ground state ...
We employ an exact Bethe ansatz solution to study the repulsive Bose–Hubbard dimer model. Using a co...
We study the ground state of few bosons with repulsive dipole-dipole interaction in a quasi-one-dime...
We propose a one-dimensional model of spinor bosons with SU(2) symmetry and a two-body finite-range ...
The energy and structure of a dilute hard-disks Bose gas are studied in the framework of a variation...
We study a gas of bosonic dipolar atoms in the presence of a transverse harmonic trapping potential ...
The one-dimensional gas of bosons interacting via a repulsive contact potential was solved long ago ...
International audienceProbing the radial collective oscillation of a trapped quantum system is an ac...
We present a quantum Monte Carlo study of two-dimensional dipolar Bose gases in ...
We study the ground state properties of interacting Fermi gases in the dilute regime, in three dimen...
We study static properties and the dynamical structure factor of zero-temperature dilute bosons inte...