A system of cascaded qubits interacting via the one-way exchange of photons is studied. While for general operating conditions the system evolves to a superposition of Bell states (a dark state) in the long-time limit, under a particular resonance condition no steady state is reached within a finite time. We analyze the conditional quantum evolution (quantum trajectories) to characterize the asymptotic behavior under this resonance condition. A distinct bimodality is observed: for perfect qubit coupling, the system either evolves to a maximally entangled Bell state without emitting photons (the dark state) or executes a sustained entangled-state cycle-random switching between a pair of Bell states while emitting a continuous photon stream; ...
We investigate when the quantum correlations of a bipartite system, under the influence of environme...
We analyze the dynamics of entanglement in a two-qubit system interacting with an initially squeeze...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
We report on an experimental investigation of the dynamics of entanglement between a single qubit an...
We demonstrate the difference between local, single-particle dynamics and global dynamics of entangl...
Two, non-interacting systems immersed in a common bath and evolving with a Markovian, completely pos...
International audienceEntanglement is a key resource in quantum information. It can be destroyed or ...
We discuss a model for non-linear quantum evolution based on the idea of time displaced entanglement...
We present a model of discrete quantum evolution based on quantum correlations between the evolving ...
We consider the environment-affected dynamics of $N$ self-interacting particles living in one-dimens...
The maximally entangled mixed states of Munro et al. [Phys. Rev. A 64, 030302 (2001)] are shown to e...
We analyze the entanglement evolution of two cavity photons being affected by the dissipat...
We discuss a model for time displaced entanglement, produced by taking one member of an entangled pa...
We experimentally generate and tomographically characterize a mixed, genuinely non-Gaussian bipartit...
Entanglement evolution in high dimensional bipartite systems under dissipation is studied. Discontin...
We investigate when the quantum correlations of a bipartite system, under the influence of environme...
We analyze the dynamics of entanglement in a two-qubit system interacting with an initially squeeze...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
We report on an experimental investigation of the dynamics of entanglement between a single qubit an...
We demonstrate the difference between local, single-particle dynamics and global dynamics of entangl...
Two, non-interacting systems immersed in a common bath and evolving with a Markovian, completely pos...
International audienceEntanglement is a key resource in quantum information. It can be destroyed or ...
We discuss a model for non-linear quantum evolution based on the idea of time displaced entanglement...
We present a model of discrete quantum evolution based on quantum correlations between the evolving ...
We consider the environment-affected dynamics of $N$ self-interacting particles living in one-dimens...
The maximally entangled mixed states of Munro et al. [Phys. Rev. A 64, 030302 (2001)] are shown to e...
We analyze the entanglement evolution of two cavity photons being affected by the dissipat...
We discuss a model for time displaced entanglement, produced by taking one member of an entangled pa...
We experimentally generate and tomographically characterize a mixed, genuinely non-Gaussian bipartit...
Entanglement evolution in high dimensional bipartite systems under dissipation is studied. Discontin...
We investigate when the quantum correlations of a bipartite system, under the influence of environme...
We analyze the dynamics of entanglement in a two-qubit system interacting with an initially squeeze...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...