The stationary properties of the Bose–Hubbard model under squeezed dissipation are investigated. The dissipative model does not possess aU (1) symmetry but conserves parity. We find that 〈a j 〉 = 0 always holds, so no symmetry breaking occurs. Without the onsite repulsion, the linear case is known to be critical. At the critical point the system freezes to an EPR state with infinite two mode entanglement. We show here that the correlations are rapidly destroyed whenever the repulsion is switched on. As we increase the latter, the system approaches a thermal state with an effective temperature defined in terms of the squeezing parameter in the dissipators. We characterize this transition by means of a Gutzwiller ansatz and the Gaussian ...
The theoretical description of non-equilibrium Bose--Einstein condensate (BEC) is one of the main ch...
International audienceWe consider a Bose gas with two-body Kac-like scaled interactions V γ (r) = γ ...
We investigate the time evolution of the entanglement entropy of coupled single-mode Bose-Einstein c...
We describe the quantum state of a Bose–Einstein condensate at zero temperature. By evaluating theQ-...
We investigate the presence of squeezing in the weakly repulsive uniform Bose gas, in both the conde...
The stationary state solutions and dynamics of Bose-Einstein condensates (BECs) at T = 0 are well de...
Abstract -The evolution of an interacting two-component Bose-Einstein condensate from an initial pha...
PhD ThesisIn this Thesis we study steady state solutions and dynamical evolutions of two– component...
We investigate the real-time dynamics of open quantum spin-1/2 or hardcore boson systems on a spatia...
We estimate the amount of temperature-dependent squeezing and entanglement in the collective excitat...
We study the nonequilibrium dynamics of a one-dimensional Bose gas trapped by a harmonic potential f...
We present analytical solutions for the mean-field master equation of the driven-dissipative Bose-Hu...
We examine the possibility of Bose-Einstein condensation in one-dimensional interacting Bose gas sub...
This thesis describes studies of out-of-equilibrium dynamics in an interacting homogeneous Bose gas....
Developing theoretical models for nonequilibrium quantum systems poses significant challenges. Here ...
The theoretical description of non-equilibrium Bose--Einstein condensate (BEC) is one of the main ch...
International audienceWe consider a Bose gas with two-body Kac-like scaled interactions V γ (r) = γ ...
We investigate the time evolution of the entanglement entropy of coupled single-mode Bose-Einstein c...
We describe the quantum state of a Bose–Einstein condensate at zero temperature. By evaluating theQ-...
We investigate the presence of squeezing in the weakly repulsive uniform Bose gas, in both the conde...
The stationary state solutions and dynamics of Bose-Einstein condensates (BECs) at T = 0 are well de...
Abstract -The evolution of an interacting two-component Bose-Einstein condensate from an initial pha...
PhD ThesisIn this Thesis we study steady state solutions and dynamical evolutions of two– component...
We investigate the real-time dynamics of open quantum spin-1/2 or hardcore boson systems on a spatia...
We estimate the amount of temperature-dependent squeezing and entanglement in the collective excitat...
We study the nonequilibrium dynamics of a one-dimensional Bose gas trapped by a harmonic potential f...
We present analytical solutions for the mean-field master equation of the driven-dissipative Bose-Hu...
We examine the possibility of Bose-Einstein condensation in one-dimensional interacting Bose gas sub...
This thesis describes studies of out-of-equilibrium dynamics in an interacting homogeneous Bose gas....
Developing theoretical models for nonequilibrium quantum systems poses significant challenges. Here ...
The theoretical description of non-equilibrium Bose--Einstein condensate (BEC) is one of the main ch...
International audienceWe consider a Bose gas with two-body Kac-like scaled interactions V γ (r) = γ ...
We investigate the time evolution of the entanglement entropy of coupled single-mode Bose-Einstein c...