Quantum correlations in a physical system are usually degraded whenever there is an interaction with the environment. Here we consider the action of a XY spin-chain interacting with a system of two qubits. Results are surprising for particular families of states since their evolution does not destroy the presence of either entanglement or nonlocality, that is, those correlations persist for any possible configuration of the environment. In addition, we unveil the form of those states which, although being mixed, their entanglement implies nonlocality and vice versa. This finding constitutes an extension of the well-known Gisin Theorem for pure states of two qubits. ...
We study the coherence and quantum correlations for a system consisting of two interacting qubits un...
We consider that two qubits interact with a common structured reservoir and initially ther...
Persistency of entanglement and nonlocality in multipartite quantum systems BRUNNER, Nicolas, VÉRTES...
We consider pure quantum states of N>1 spins or qubits and study the average entanglement that can b...
We study the dynamics of a chain of interacting quantum particles affected by an individual or colle...
In this paper, the non-Markovian dynamics of a two spin-qubits system which interacts with two corre...
We study the evolution and persistence of quantum and classical correlations between spatially separ...
A model of evolution of entanglement of bipartite quantum state is studied. It involves recently int...
Long-range quantum correlations between particles are usually formulated by assuming the persistence...
Knowledge of the dynamical behavior of correlations with no classical counterpart, like entanglement...
We compute quantum dissonance Q (non-entangled quantum correlation), entanglement E, quant...
The problem of detecting quantum signatures in the correlations formed in dynamical evolution of qua...
We study the dynamics of multipartite quantum correlations measured by the lower bound of ...
The transverse-field XY model in one dimension is a well-known spin model for which the gr...
The behavior under particle loss of entanglement and nonlocality is investigated in multipartite qua...
We study the coherence and quantum correlations for a system consisting of two interacting qubits un...
We consider that two qubits interact with a common structured reservoir and initially ther...
Persistency of entanglement and nonlocality in multipartite quantum systems BRUNNER, Nicolas, VÉRTES...
We consider pure quantum states of N>1 spins or qubits and study the average entanglement that can b...
We study the dynamics of a chain of interacting quantum particles affected by an individual or colle...
In this paper, the non-Markovian dynamics of a two spin-qubits system which interacts with two corre...
We study the evolution and persistence of quantum and classical correlations between spatially separ...
A model of evolution of entanglement of bipartite quantum state is studied. It involves recently int...
Long-range quantum correlations between particles are usually formulated by assuming the persistence...
Knowledge of the dynamical behavior of correlations with no classical counterpart, like entanglement...
We compute quantum dissonance Q (non-entangled quantum correlation), entanglement E, quant...
The problem of detecting quantum signatures in the correlations formed in dynamical evolution of qua...
We study the dynamics of multipartite quantum correlations measured by the lower bound of ...
The transverse-field XY model in one dimension is a well-known spin model for which the gr...
The behavior under particle loss of entanglement and nonlocality is investigated in multipartite qua...
We study the coherence and quantum correlations for a system consisting of two interacting qubits un...
We consider that two qubits interact with a common structured reservoir and initially ther...
Persistency of entanglement and nonlocality in multipartite quantum systems BRUNNER, Nicolas, VÉRTES...