In a system of two charge-qubits that are initially prepared in a maximally entangled Bell’s state, the dynamics of quantum memory-assisted entropic uncertainty, purity, and negative entanglement are investigated. Isolated external cavity fields are considered in two different configurations: coherent-even coherent and even coherent cavity fields. For different initial cavity configurations, the temporal evolution of the final state of qubits and cavities is solved analytically. The effects of intrinsic decoherence and detuning strength on the dynamics of bipartite entropic uncertainty, purity and entanglement are explored. Depending on the field parameters, nonclassical correlations can be preserved. Nonclassical correlations and revival a...
Uncertainty relations capture the essence of the inevitable randomness associated with the outcomes ...
We derive a new memory-assisted entropic uncertainty relation for non-degenerate Hermitian observabl...
We consider spatially separated qubits coupled to a thermal bosonic field that causes pure dephasing...
The engineering properties of trapped ions and their capacity to engender numerous quantum informati...
Entropic uncertainty and entanglement are two distinct aspects of quantum mechanical procedures. To ...
We analytically investigate two separated qubits inside an open cavity field. The cavity is initiall...
We consider that two qubits interact with a common structured reservoir and initially ther...
The uncertainty principle is an important principle in quantum theory. Based on this principle, it i...
An analytical solution of the master equation that describes a superconducting cavity containing two...
In this paper, we investigate the entanglement dynamics and decoherence in the interacting system of...
In this article, we introduce an analytical description for the nonlinear off-resonance qutrit-cavit...
We study decoherence of two non-interacting qubits. The environment and its interaction with the qub...
In this work, we investigate the dynamics of quantum correlations captured by entropic and geometric...
The thesis is contributed to the study of the decoherence dynamics of dissipative qubit systems. We ...
We investigate the dynamics of quantum entanglement and more general quantum correlations quantified...
Uncertainty relations capture the essence of the inevitable randomness associated with the outcomes ...
We derive a new memory-assisted entropic uncertainty relation for non-degenerate Hermitian observabl...
We consider spatially separated qubits coupled to a thermal bosonic field that causes pure dephasing...
The engineering properties of trapped ions and their capacity to engender numerous quantum informati...
Entropic uncertainty and entanglement are two distinct aspects of quantum mechanical procedures. To ...
We analytically investigate two separated qubits inside an open cavity field. The cavity is initiall...
We consider that two qubits interact with a common structured reservoir and initially ther...
The uncertainty principle is an important principle in quantum theory. Based on this principle, it i...
An analytical solution of the master equation that describes a superconducting cavity containing two...
In this paper, we investigate the entanglement dynamics and decoherence in the interacting system of...
In this article, we introduce an analytical description for the nonlinear off-resonance qutrit-cavit...
We study decoherence of two non-interacting qubits. The environment and its interaction with the qub...
In this work, we investigate the dynamics of quantum correlations captured by entropic and geometric...
The thesis is contributed to the study of the decoherence dynamics of dissipative qubit systems. We ...
We investigate the dynamics of quantum entanglement and more general quantum correlations quantified...
Uncertainty relations capture the essence of the inevitable randomness associated with the outcomes ...
We derive a new memory-assisted entropic uncertainty relation for non-degenerate Hermitian observabl...
We consider spatially separated qubits coupled to a thermal bosonic field that causes pure dephasing...