In this paper, we consider the thermal bath Lindblad master equation to describe the quantum nonunitary dynamics of quantum states in a multi-mode bosonic system. For the two-mode bosonic system interacting with an environment, we analyse how both the coupling between the modes and the coupling with the environment characterised by the frequency and the relaxation rate vectors affect dynamics of the entanglement. We discuss how the revivals of entanglement can be induced by the dynamic coupling between the different modes. For the system, initially prepared in a two-mode squeezed state, we find the logarithmic negativity as defined by the magnitude and orientation of the frequency and the relaxation rate vectors. We show that, in the regime...
We study a dynamic process of disentanglement by considering the time evolution of bound entanglemen...
The effect of a thermal reservoir is investigated on a bipartite Gaussian state. We derive a pre-Lin...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
We employ an exact solution of the thermal bath Lindblad master equation with the Liouvillian supero...
We study the non-Markovian dynamics of a two-mode bosonic system interacting with two uncorrelated t...
We theoretically investigate a system of two coupled bosonic modes subject to both dissipation and e...
We study a system of two bosonic fields subject to two-mode squeezing in the presence of dissipation...
An exactly solvable case of an interacting Hamiltonian of two bosonic modes is considered to study f...
The focus of the study is the free quantum evolution of Duffing oscillators which are nonlinearly co...
We study entanglement properties of two-mode squeezed thermal states subjected to two sources of dec...
We analyze the dynamics of entanglement in a two-qubit system interacting with an initially squeeze...
The Lindblad equation describes the dissipative time evolution of a density matrix that characterize...
We study entanglement dynamics in a system consisting of a qubit dispersively coupled to a finite-te...
The Lindblad equation describes the dissipative time evolution of a density matrix that characterize...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
We study a dynamic process of disentanglement by considering the time evolution of bound entanglemen...
The effect of a thermal reservoir is investigated on a bipartite Gaussian state. We derive a pre-Lin...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
We employ an exact solution of the thermal bath Lindblad master equation with the Liouvillian supero...
We study the non-Markovian dynamics of a two-mode bosonic system interacting with two uncorrelated t...
We theoretically investigate a system of two coupled bosonic modes subject to both dissipation and e...
We study a system of two bosonic fields subject to two-mode squeezing in the presence of dissipation...
An exactly solvable case of an interacting Hamiltonian of two bosonic modes is considered to study f...
The focus of the study is the free quantum evolution of Duffing oscillators which are nonlinearly co...
We study entanglement properties of two-mode squeezed thermal states subjected to two sources of dec...
We analyze the dynamics of entanglement in a two-qubit system interacting with an initially squeeze...
The Lindblad equation describes the dissipative time evolution of a density matrix that characterize...
We study entanglement dynamics in a system consisting of a qubit dispersively coupled to a finite-te...
The Lindblad equation describes the dissipative time evolution of a density matrix that characterize...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
We study a dynamic process of disentanglement by considering the time evolution of bound entanglemen...
The effect of a thermal reservoir is investigated on a bipartite Gaussian state. We derive a pre-Lin...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...