International audienceWe 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 study the ground state properties of interacting Fermi gases in the dilute regime, in three dimen...
We propose a one-dimensional model of spinor bosons with SU(2) symmetry and a two-body finite-range ...
Special Issue Editors: Andrea Perali , Luca Salasnich , Luca Dell'Anna, Yasutomo UemuraAcademic ...
International audienceWe propose a variational approximation to the ground state energy of a one-dim...
We study the ground-state properties and excitation spectrum of the Lieb-Liniger model, i.e. the on...
We employ an exact Bethe ansatz solution to study the repulsive Bose–Hubbard dimer model. Using a co...
We present a simple approximation scheme for the solution of the integral equations resulting from t...
A new variational scheme based on a modified Bethe-Peierls method is used to study the ground state ...
The energy and structure of a dilute hard-disks Bose gas are studied in the framework of a variation...
The one-dimensional gas of bosons interacting via a repulsive contact potential was solved long ago ...
We study a gas of bosonic dipolar atoms in the presence of a transverse harmonic trapping potential ...
International audienceProbing the radial collective oscillation of a trapped quantum system is an ac...
We study the ground state of few bosons with repulsive dipole-dipole interaction in a quasi-one-dime...
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 propose a one-dimensional model of spinor bosons with SU(2) symmetry and a two-body finite-range ...
Special Issue Editors: Andrea Perali , Luca Salasnich , Luca Dell'Anna, Yasutomo UemuraAcademic ...
International audienceWe propose a variational approximation to the ground state energy of a one-dim...
We study the ground-state properties and excitation spectrum of the Lieb-Liniger model, i.e. the on...
We employ an exact Bethe ansatz solution to study the repulsive Bose–Hubbard dimer model. Using a co...
We present a simple approximation scheme for the solution of the integral equations resulting from t...
A new variational scheme based on a modified Bethe-Peierls method is used to study the ground state ...
The energy and structure of a dilute hard-disks Bose gas are studied in the framework of a variation...
The one-dimensional gas of bosons interacting via a repulsive contact potential was solved long ago ...
We study a gas of bosonic dipolar atoms in the presence of a transverse harmonic trapping potential ...
International audienceProbing the radial collective oscillation of a trapped quantum system is an ac...
We study the ground state of few bosons with repulsive dipole-dipole interaction in a quasi-one-dime...
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 propose a one-dimensional model of spinor bosons with SU(2) symmetry and a two-body finite-range ...
Special Issue Editors: Andrea Perali , Luca Salasnich , Luca Dell'Anna, Yasutomo UemuraAcademic ...