We consider the Tonks-Girardeau gas subject to a random external potential. If the disorder is such that the underlying one-particle Hamiltonian displays localization (which is known to be generically the case), we show that there is exponential decay of correlations in the many-body eigenstates. Moreover, there is no Bose-Einstein condensation and no superfluidity, even at zero temperature
The dynamics of many-body quantum systems is attracting a growing attention, motivated by the devel...
The superfluid transition of a three-dimensional gas of hard-sphere bosons in a disordered medium is...
In general, the dynamics of many-body quantum systems far-from-equilibrium is highly intricate, and ...
We theoretically demonstrate features of Anderson localization in a Tonks-Girardeau gas confined in ...
We investigate the thermodynamic properties of a dilute Bose gas in a correlated random potential us...
We consider a system of fermions with a quasi-random almost-Mathieu disorder interacting through a m...
We present a field-theory description of ultracold bosonic atoms in presence of a disordered externa...
Presented at the QMath13 Conference: Mathematical Results in Quantum Theory, October 8-11, 2016 at t...
Journals published by the American Physical Society can be found at http://journals.aps.org/The loca...
International audienceWe study the phase diagram of two-dimensional, interacting bosons in the prese...
International audienceWe study Bose-Einstein Condensation (BEC) in the Infinite-Range Hopping Bose-H...
We investigate the thermodynamic properties of a dilute Bose gas in a correlated random potential us...
We investigate the properties of the superfluid phase in the three-dimensional disordered Bose-Hubba...
The study of the interplay between localization and interactions in disordered quantum systems led t...
In one-dimensional (1D) quantum gases, the momentum distribution (MD) of the atoms is a standard exp...
The dynamics of many-body quantum systems is attracting a growing attention, motivated by the devel...
The superfluid transition of a three-dimensional gas of hard-sphere bosons in a disordered medium is...
In general, the dynamics of many-body quantum systems far-from-equilibrium is highly intricate, and ...
We theoretically demonstrate features of Anderson localization in a Tonks-Girardeau gas confined in ...
We investigate the thermodynamic properties of a dilute Bose gas in a correlated random potential us...
We consider a system of fermions with a quasi-random almost-Mathieu disorder interacting through a m...
We present a field-theory description of ultracold bosonic atoms in presence of a disordered externa...
Presented at the QMath13 Conference: Mathematical Results in Quantum Theory, October 8-11, 2016 at t...
Journals published by the American Physical Society can be found at http://journals.aps.org/The loca...
International audienceWe study the phase diagram of two-dimensional, interacting bosons in the prese...
International audienceWe study Bose-Einstein Condensation (BEC) in the Infinite-Range Hopping Bose-H...
We investigate the thermodynamic properties of a dilute Bose gas in a correlated random potential us...
We investigate the properties of the superfluid phase in the three-dimensional disordered Bose-Hubba...
The study of the interplay between localization and interactions in disordered quantum systems led t...
In one-dimensional (1D) quantum gases, the momentum distribution (MD) of the atoms is a standard exp...
The dynamics of many-body quantum systems is attracting a growing attention, motivated by the devel...
The superfluid transition of a three-dimensional gas of hard-sphere bosons in a disordered medium is...
In general, the dynamics of many-body quantum systems far-from-equilibrium is highly intricate, and ...