We address the effect of classical noise on the dynamics of quantum correlations, entanglement and quantum discord (QD), of two non-interacting qubits initially prepared in a Bell state. The effect of noise is modeled by randomizing the single-qubit transition amplitudes. We address both static and dynamic environmental noise corresponding to interaction with separate and common baths in either Markovian and non-Markovian regimes. In the Markov regime, a monotone decay of the quantum correlations is found, whereas for non-Markovian noise sudden death and revival phenomena may occur, depending on the characteristics of the noise. Entanglement and QD show the same qualitative behavior for all kind of noises considered. On the other hand, we f...
We show that two qubits, initially in a fully classical state, can develop significant quantum corre...
We show that two qubits, initially in a fully classical state, can develop significant quantum corre...
We evaluate the quantum discord dynamics of two qubits in independent and common non-Markovian envir...
We address the dynamics of entanglement and quantum discord for two noninteracting qubits initially ...
We address the dynamics of entanglement and quantum discord for two noninteracting qubits initially ...
We address the dynamics of entanglement and quantum discord for two noninteracting qubits initially ...
We analyze the effect of a classical noise into the entanglement dynamics between two particles, ini...
We analyze the effect of a classical noise into the entanglement dynamics between two particles, ini...
We study the dynamics of quantum correlations for two non interacting qubits initially prepared in a...
We study the dynamics of quantum correlations for two non interacting qubits initially prepared in a...
We study the dynamics of quantum correlations for two non interacting qubits initially prepared in a...
Few studies explored the dynamics of nonclassical correlations besides entanglement in open multipar...
Few studies explored the dynamics of nonclassical correlations besides entanglement in open multipar...
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 show that two qubits, initially in a fully classical state, can develop significant quantum corre...
We show that two qubits, initially in a fully classical state, can develop significant quantum corre...
We evaluate the quantum discord dynamics of two qubits in independent and common non-Markovian envir...
We address the dynamics of entanglement and quantum discord for two noninteracting qubits initially ...
We address the dynamics of entanglement and quantum discord for two noninteracting qubits initially ...
We address the dynamics of entanglement and quantum discord for two noninteracting qubits initially ...
We analyze the effect of a classical noise into the entanglement dynamics between two particles, ini...
We analyze the effect of a classical noise into the entanglement dynamics between two particles, ini...
We study the dynamics of quantum correlations for two non interacting qubits initially prepared in a...
We study the dynamics of quantum correlations for two non interacting qubits initially prepared in a...
We study the dynamics of quantum correlations for two non interacting qubits initially prepared in a...
Few studies explored the dynamics of nonclassical correlations besides entanglement in open multipar...
Few studies explored the dynamics of nonclassical correlations besides entanglement in open multipar...
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 show that two qubits, initially in a fully classical state, can develop significant quantum corre...
We show that two qubits, initially in a fully classical state, can develop significant quantum corre...
We evaluate the quantum discord dynamics of two qubits in independent and common non-Markovian envir...