We study an interacting one-dimensional gas of spin-1/2 fermions with two-body losses. The dynamical phase diagram that characterises the approach to the stationary state displays a wide quantum-Zeno region, identified by a peculiar behaviour of the lowest eigenvalues of the associated non-Hermitian Hamiltonian. We characterise the universal dynamics of this Zeno regime using an approximation scheme based on a effective decoupling of charge and spin degrees of freedom, where the latter effectively evolve in a non-Markovian way according to a non-Hermitian Heisenberg Hamiltonian. We present detailed results for the time evolution from initial states with one particle per site with either incoherent and antiferromagnetic spin order, showing h...
International audienceWe study a driven-dissipative Bose-Hubbard model in presence of two-particle l...
We investigate the time evolution of an open quantum system described by a Lindblad master equation ...
In this thesis we study the dynamics of one-dimensional strongly interacting few-body systems. We pr...
We study an interacting one-dimensional gas of spin-1/2 fermions with two-body losses. The dynamical...
In this Letter we report exact results on the infrared asymptotics of the one-particle dynamical cor...
5 pages and 3 figures + AppendicesInternational audienceWe consider strong two-body losses in bosoni...
We consider the dynamic response functions of interacting one dimensional spin-$1/2$ fermions at arb...
We show that weak measurement leads to unconventional quantum Zeno dynamics with Raman-like transiti...
We develop a nonperturbative zero-temperature theory for the dynamic response functions of interacti...
We consider strong two-body losses in bosonic gases trapped in one-dimensional optical lattices. We ...
We explore the dynamics of hard-core lattice bosons in the presence of strong non-local particle los...
We study stationary and dynamical properties of the many-body Landau-Zener dynamics of a Bose quantu...
In this work, we study the non-equilibrium dynamics of low-dimensional strongly correlated quantum s...
We present a theoretical analysis of the dynamics of a one-dimensional spin-1/2 fermionic gas subjec...
International audienceWe study a driven-dissipative Bose-Hubbard model in the presence of two-partic...
International audienceWe study a driven-dissipative Bose-Hubbard model in presence of two-particle l...
We investigate the time evolution of an open quantum system described by a Lindblad master equation ...
In this thesis we study the dynamics of one-dimensional strongly interacting few-body systems. We pr...
We study an interacting one-dimensional gas of spin-1/2 fermions with two-body losses. The dynamical...
In this Letter we report exact results on the infrared asymptotics of the one-particle dynamical cor...
5 pages and 3 figures + AppendicesInternational audienceWe consider strong two-body losses in bosoni...
We consider the dynamic response functions of interacting one dimensional spin-$1/2$ fermions at arb...
We show that weak measurement leads to unconventional quantum Zeno dynamics with Raman-like transiti...
We develop a nonperturbative zero-temperature theory for the dynamic response functions of interacti...
We consider strong two-body losses in bosonic gases trapped in one-dimensional optical lattices. We ...
We explore the dynamics of hard-core lattice bosons in the presence of strong non-local particle los...
We study stationary and dynamical properties of the many-body Landau-Zener dynamics of a Bose quantu...
In this work, we study the non-equilibrium dynamics of low-dimensional strongly correlated quantum s...
We present a theoretical analysis of the dynamics of a one-dimensional spin-1/2 fermionic gas subjec...
International audienceWe study a driven-dissipative Bose-Hubbard model in the presence of two-partic...
International audienceWe study a driven-dissipative Bose-Hubbard model in presence of two-particle l...
We investigate the time evolution of an open quantum system described by a Lindblad master equation ...
In this thesis we study the dynamics of one-dimensional strongly interacting few-body systems. We pr...