We consider strong two-body losses in bosonic gases trapped in one-dimensional optical lattices. We exploit the separation of timescales typical of a system in the many-body quantum Zeno regime to establish a connection with the theory of the time-dependent generalized Gibbs ensemble. Our main result is a simple set of rate equations that capture the simultaneous action of coherent evolution and two-body losses. This treatment gives an accurate description of the dynamics of a gas prepared in a Mott insulating state and shows that its long-time behavior deviates significantly from mean-field analyses. The possibility of observing our predictions in an experiment with Yb174 in a metastable state is also discussed
The problem of how complex quantum systems eventually come to rest lies at the heart of statistical ...
Recent experiments have demonstrated single-site resolved observation of cold atoms in optical latti...
We present a many-body description for two-component ultracold bosonic gases when one of the species...
We consider strong two-body losses in bosonic gases trapped in one-dimensional optical lattices. We ...
5 pages and 3 figures + AppendicesInternational audienceWe consider strong two-body losses in bosoni...
We explore the dynamics of hard-core lattice bosons in the presence of strong non-local particle los...
We observe the dissipative dynamics of a dense, strongly interacting gas of bosonic atom pairs in an...
The problem of how complex quantum systems eventually come to rest lies at the heart of statistical ...
International audienceWe study the quantum many-body dynamics and the entropy production triggered b...
Recent experiments have demonstrated single-site resolved observation of cold atoms in optical latti...
Motivated by the recent experiments on engineering localized losses in quantum gases, we study the d...
We explore the dynamics of hard-core lattice bosons in the presence of strong non-local particle los...
Atomic quantum gases in the strong-correlation regime offer unique possibilities to explore a variet...
The dynamical evolution of an ultracold Bose gas distributed across the sites of an optical lattice ...
The problem of how complex quantum systems eventually come to rest lies at the heart of statistical ...
The problem of how complex quantum systems eventually come to rest lies at the heart of statistical ...
Recent experiments have demonstrated single-site resolved observation of cold atoms in optical latti...
We present a many-body description for two-component ultracold bosonic gases when one of the species...
We consider strong two-body losses in bosonic gases trapped in one-dimensional optical lattices. We ...
5 pages and 3 figures + AppendicesInternational audienceWe consider strong two-body losses in bosoni...
We explore the dynamics of hard-core lattice bosons in the presence of strong non-local particle los...
We observe the dissipative dynamics of a dense, strongly interacting gas of bosonic atom pairs in an...
The problem of how complex quantum systems eventually come to rest lies at the heart of statistical ...
International audienceWe study the quantum many-body dynamics and the entropy production triggered b...
Recent experiments have demonstrated single-site resolved observation of cold atoms in optical latti...
Motivated by the recent experiments on engineering localized losses in quantum gases, we study the d...
We explore the dynamics of hard-core lattice bosons in the presence of strong non-local particle los...
Atomic quantum gases in the strong-correlation regime offer unique possibilities to explore a variet...
The dynamical evolution of an ultracold Bose gas distributed across the sites of an optical lattice ...
The problem of how complex quantum systems eventually come to rest lies at the heart of statistical ...
The problem of how complex quantum systems eventually come to rest lies at the heart of statistical ...
Recent experiments have demonstrated single-site resolved observation of cold atoms in optical latti...
We present a many-body description for two-component ultracold bosonic gases when one of the species...