Understanding the non-Markovian mechanisms underlying the revivals of quantum entanglement in the presence of classical environments is central in the theory of quantum information. Tentative interpretations have been given by either the role of the environment as a control device or the concept of hidden entanglement. We address this issue from an information-theoretic point of view. To this aim, we consider a paradigmatic tripartite system, already realized in the laboratory, made of two independent qubits and a random classical field locally interacting with one qubit alone. We study the dynamical relationship between the two-qubit entanglement and the genuine tripartite correlations of the overall system, finding that collapse and reviv...
We show that two qubits, initially in a fully classical state, can develop significant quantum corre...
We investigate when the quantum correlations of a bipartite system, under the influence of environme...
We show that two qubits, initially in a fully classical state, can develop significant quantum corre...
Understanding the non-Markovian mechanisms underlying the revivals of quantum entanglement in the pr...
Quantum correlations (entanglement, discord, nonlo-cality) present in a composite quantum system are...
Quantum correlations (entanglement, discord, nonlo-cality) present in a composite quantum system are...
Revivals of quantum correlations have often been explained in terms of back-action on quantum system...
Revivals of quantum correlations have often been explained in terms of back-action on quantum system...
The occurrence of revivals of quantum entanglement between separated open quantum systems has been s...
The occurrence of revivals of quantum entanglement between separated open quantum systems has been s...
Revivals of quantum correlations in composite open quantum systems are a useful dynamical feature ag...
Revivals of quantum correlations in composite open quantum systems are a useful dynamical feature ag...
Knowledge of the dynamical behavior of correlations with no classical counterpart, like entanglement...
Knowledge of the dynamical behavior of correlations with no classical counterpart, like entanglement...
We investigate when the quantum correlations of a bipartite system, under the influence of environme...
We show that two qubits, initially in a fully classical state, can develop significant quantum corre...
We investigate when the quantum correlations of a bipartite system, under the influence of environme...
We show that two qubits, initially in a fully classical state, can develop significant quantum corre...
Understanding the non-Markovian mechanisms underlying the revivals of quantum entanglement in the pr...
Quantum correlations (entanglement, discord, nonlo-cality) present in a composite quantum system are...
Quantum correlations (entanglement, discord, nonlo-cality) present in a composite quantum system are...
Revivals of quantum correlations have often been explained in terms of back-action on quantum system...
Revivals of quantum correlations have often been explained in terms of back-action on quantum system...
The occurrence of revivals of quantum entanglement between separated open quantum systems has been s...
The occurrence of revivals of quantum entanglement between separated open quantum systems has been s...
Revivals of quantum correlations in composite open quantum systems are a useful dynamical feature ag...
Revivals of quantum correlations in composite open quantum systems are a useful dynamical feature ag...
Knowledge of the dynamical behavior of correlations with no classical counterpart, like entanglement...
Knowledge of the dynamical behavior of correlations with no classical counterpart, like entanglement...
We investigate when the quantum correlations of a bipartite system, under the influence of environme...
We show that two qubits, initially in a fully classical state, can develop significant quantum corre...
We investigate when the quantum correlations of a bipartite system, under the influence of environme...
We show that two qubits, initially in a fully classical state, can develop significant quantum corre...