We study a system of few fermions in a one-dimensional harmonic trap and focus on the case of dipolar majority particles in contact with a single impurity. The impurity is used both for quenching the system and for tracking the system evolution after the quench. Employing exact diagonalization, we investigate relaxation and thermalization properties. In the absence of dipolar interactions, the system dynamics remains oscillatory even on long time scales. On the other hand, repulsive as well as attractive dipolar interactions lead to quick relaxation to the diagonal ensemble average, which is significantly different from corresponding thermal averages. A Wigner-shaped level spacing distribution indicates level repulsion and thus chaoti...
We experimentally and numerically investigate the sudden expansion of fermions in a homogeneous one-...
The study of the quantum dynamics of many-particle systems has recently become the subject of intens...
We study the out-of-equilibrium quantum dynamics of dipolar polarons, i.e., impurities immersed in a...
We study a system of few fermions in a one-dimensional harmonic trap and focus on the case of dipola...
We study spectral properties and the dynamics after a quench of one-dimensional spinless fermions wi...
We consider a system of non-interacting fermions in one dimension subject to a single-particle poten...
We examine the validity of fluctuation-dissipation relations in isolated quantum systems taken out o...
We study the ground state of few bosons with repulsive dipole-dipole interaction in a quasi-one-dime...
We study spin-1/2 fermions, interacting via a two-body contact potential, in a one-dimensional harmo...
We study the non-equilibrium dynamics of an impurity in a harmonic trap that is kicked with a well-d...
International audienceWe study the out-of-equilibrium dynamics of noninteracting fermions in one dim...
A variety of recent studies have shed light on the far from equilibrium behavior of quantum systems....
We analyze the microscopic few-body properties of dipolar particles confined in two parallel quasi-o...
We present a comparison between the bosonization results for quantum quenches and exact diagonalizat...
Using a Luttinger liquid theory we investigate the time evolution of the particle density of a one-d...
We experimentally and numerically investigate the sudden expansion of fermions in a homogeneous one-...
The study of the quantum dynamics of many-particle systems has recently become the subject of intens...
We study the out-of-equilibrium quantum dynamics of dipolar polarons, i.e., impurities immersed in a...
We study a system of few fermions in a one-dimensional harmonic trap and focus on the case of dipola...
We study spectral properties and the dynamics after a quench of one-dimensional spinless fermions wi...
We consider a system of non-interacting fermions in one dimension subject to a single-particle poten...
We examine the validity of fluctuation-dissipation relations in isolated quantum systems taken out o...
We study the ground state of few bosons with repulsive dipole-dipole interaction in a quasi-one-dime...
We study spin-1/2 fermions, interacting via a two-body contact potential, in a one-dimensional harmo...
We study the non-equilibrium dynamics of an impurity in a harmonic trap that is kicked with a well-d...
International audienceWe study the out-of-equilibrium dynamics of noninteracting fermions in one dim...
A variety of recent studies have shed light on the far from equilibrium behavior of quantum systems....
We analyze the microscopic few-body properties of dipolar particles confined in two parallel quasi-o...
We present a comparison between the bosonization results for quantum quenches and exact diagonalizat...
Using a Luttinger liquid theory we investigate the time evolution of the particle density of a one-d...
We experimentally and numerically investigate the sudden expansion of fermions in a homogeneous one-...
The study of the quantum dynamics of many-particle systems has recently become the subject of intens...
We study the out-of-equilibrium quantum dynamics of dipolar polarons, i.e., impurities immersed in a...