We investigate the quantum interference induced by a relative phase in the correlated initial state of a system which consists in a two-level atom interacting with a damped mode of the radiation field. We show that the initial relative phase has significant effects on both the evolution of the atomic excited-state population and the information flow between the atom and the reservoir, as quantified by the trace distance. Furthermore, by considering two two-level atoms interacting with a common damped mode of the radiation field, we highlight how initial relative phases can affect the subsequent entanglement dynamics
The dynamics of an atomic few-level system can depend on the phase of driving fields coupled to the ...
The dynamics of an atomic few-level system can depend on the phase of driving fields coupled to the ...
We introduce the concept of initial-phase spectroscopy as a control of the dynamics of entangled sta...
We discuss the connection between quantum interference effects in optical beams and radiation fields...
We consider that two qubits interact with a common structured reservoir and initially ther...
In this study, we investigate the correlations between the atoms in a system of two atoms interactin...
When a quantum system interacts with multiple reservoirs, the environmental effects are usually trea...
In this study, we investigate the correlations between the atoms in a system of two atoms interactin...
This paper deals with a system exhibiting quantum interference in the two-photon coupling between it...
Quantum operations represented by completely positive maps encompass many physical processes and hav...
An appropriate operator for the quantum description of the relative phase in the interaction of a th...
AbstractThe quantitative description of the quantum correlations between each two-level system in a ...
An appropriate operator for the quantum description of the relative phase in the interaction of a th...
The quantitative description of the quantum correlations between each two-level system in a two-atom...
The dynamical behavior of quantum correlations captured by different forms Measurement-Induced Nonlo...
The dynamics of an atomic few-level system can depend on the phase of driving fields coupled to the ...
The dynamics of an atomic few-level system can depend on the phase of driving fields coupled to the ...
We introduce the concept of initial-phase spectroscopy as a control of the dynamics of entangled sta...
We discuss the connection between quantum interference effects in optical beams and radiation fields...
We consider that two qubits interact with a common structured reservoir and initially ther...
In this study, we investigate the correlations between the atoms in a system of two atoms interactin...
When a quantum system interacts with multiple reservoirs, the environmental effects are usually trea...
In this study, we investigate the correlations between the atoms in a system of two atoms interactin...
This paper deals with a system exhibiting quantum interference in the two-photon coupling between it...
Quantum operations represented by completely positive maps encompass many physical processes and hav...
An appropriate operator for the quantum description of the relative phase in the interaction of a th...
AbstractThe quantitative description of the quantum correlations between each two-level system in a ...
An appropriate operator for the quantum description of the relative phase in the interaction of a th...
The quantitative description of the quantum correlations between each two-level system in a two-atom...
The dynamical behavior of quantum correlations captured by different forms Measurement-Induced Nonlo...
The dynamics of an atomic few-level system can depend on the phase of driving fields coupled to the ...
The dynamics of an atomic few-level system can depend on the phase of driving fields coupled to the ...
We introduce the concept of initial-phase spectroscopy as a control of the dynamics of entangled sta...