We analyze the dynamics of various kinds of correlations present between two initially entangled independent qubits, each one subject to a local phase-noisy laser. We give explicit expressions for the relevant quantifiers of correlations for the general case of single-qubit unital evolution, which includes the case of a phase-noisy laser. Although the light field is treated as classical, we find that this model can describe revivals of quantum correlations. Two different dynamical regimes of decay of correlations occur, a Markovian one (exponential decay) and a non-Markovian one (oscillatory decay with revivals) depending on the values of system parameters. In particular, in the non-Markovian regime, quantum correlations quantified by quant...
We show that two qubits, initially in a fully classical state, can develop significant quantum corre...
We study the dynamics of multipartite quantum correlations in terms of genuinely multipart...
We evaluate the quantum discord dynamics of two qubits in independent and common non-Markovian envir...
We analyze the dynamics of various kinds of correlations present between two initially entangled ind...
Knowledge of the dynamical behavior of correlations with no classical counterpart, like entanglement...
We address the dynamics of entanglement and quantum discord for two noninteracting qubits initially ...
We study the time evolution of classical and quantum correlations for hybrid qubit–qutrit systems in...
We address the effect of classical noise on the dynamics of quantum correlations, entanglement and q...
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...
In this work, we investigate the dynamics of quantum correlations captured by entropic and geometric...
Starting from the exact evolution of a Markovian dissipative quantum walk, a non-Markovian decoheren...
International audienceIt is well known that quantum entanglement makes possible certain tasks in qua...
We study the symmetry properties in the dynamics of quantum correlations for two-qubit systems in on...
We show that the phenomenon of frozen discord, exhibited by specific classes of two-qubit states und...
We show that two qubits, initially in a fully classical state, can develop significant quantum corre...
We study the dynamics of multipartite quantum correlations in terms of genuinely multipart...
We evaluate the quantum discord dynamics of two qubits in independent and common non-Markovian envir...
We analyze the dynamics of various kinds of correlations present between two initially entangled ind...
Knowledge of the dynamical behavior of correlations with no classical counterpart, like entanglement...
We address the dynamics of entanglement and quantum discord for two noninteracting qubits initially ...
We study the time evolution of classical and quantum correlations for hybrid qubit–qutrit systems in...
We address the effect of classical noise on the dynamics of quantum correlations, entanglement and q...
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...
In this work, we investigate the dynamics of quantum correlations captured by entropic and geometric...
Starting from the exact evolution of a Markovian dissipative quantum walk, a non-Markovian decoheren...
International audienceIt is well known that quantum entanglement makes possible certain tasks in qua...
We study the symmetry properties in the dynamics of quantum correlations for two-qubit systems in on...
We show that the phenomenon of frozen discord, exhibited by specific classes of two-qubit states und...
We show that two qubits, initially in a fully classical state, can develop significant quantum corre...
We study the dynamics of multipartite quantum correlations in terms of genuinely multipart...
We evaluate the quantum discord dynamics of two qubits in independent and common non-Markovian envir...