The quantum dynamics of two weakly coupled nonlinear oscillators is analytically and numerically investigated in the context of nonlinear dissipation. The latter facilitates the creation and preservation of nonclassical steady states. Starting from a microscopic description of two oscillators individually interacting with their dissipative environments, it is found that in addition to energy relaxation, dephasing arises due to the mutual coupling. Using the negativity as an entanglement measure, it is shown that the coupling entangles the oscillators in the long-time limit. For finite temperatures, entanglement sudden death and rebirth are observed
We study entanglement dynamics in a system consisting of a qubit dispersively coupled to a finite-te...
Two forms of dissipation are applied to a system of two coupled harmonic oscillators. Resulting quan...
We investigate how to model Markovian evolution of coupled harmonic oscillators, each of them intera...
We study the asymptotic entanglement of two quantum harmonic oscillators nonlinearly coupled to an e...
We study the asymptotic entanglement of two quantum harmonic oscillators nonlinearly coupled to an e...
We study the asymptotic entanglement of two quantum harmonic oscillators nonlinearly coupled to an e...
We study the asymptotic entanglement of two quantum harmonic oscillators nonlinearly coupledto an en...
The focus of the study is the free quantum evolution of Duffing oscillators which are nonlinearly co...
We provide a complete characterization of the evolution of entanglement between two resonant oscilla...
Recent experiments aim at cooling nanomechanical resonators to the ground state by coupling them to ...
The dynamics of entanglement and the phenomenon of entanglement sudden death (ESD) \cite{yu} are dis...
The evolution of the entanglement between oscillators that interact with the same environment displa...
The effect of a thermal reservoir is investigated on a bipartite Gaussian state. We derive a pre-Lin...
The apparent difficulty in recovering classical nonlinear dynamics and chaos from standard quantum m...
This is the final version. Available from American Physical Society via the DOI in this recordIn thi...
We study entanglement dynamics in a system consisting of a qubit dispersively coupled to a finite-te...
Two forms of dissipation are applied to a system of two coupled harmonic oscillators. Resulting quan...
We investigate how to model Markovian evolution of coupled harmonic oscillators, each of them intera...
We study the asymptotic entanglement of two quantum harmonic oscillators nonlinearly coupled to an e...
We study the asymptotic entanglement of two quantum harmonic oscillators nonlinearly coupled to an e...
We study the asymptotic entanglement of two quantum harmonic oscillators nonlinearly coupled to an e...
We study the asymptotic entanglement of two quantum harmonic oscillators nonlinearly coupledto an en...
The focus of the study is the free quantum evolution of Duffing oscillators which are nonlinearly co...
We provide a complete characterization of the evolution of entanglement between two resonant oscilla...
Recent experiments aim at cooling nanomechanical resonators to the ground state by coupling them to ...
The dynamics of entanglement and the phenomenon of entanglement sudden death (ESD) \cite{yu} are dis...
The evolution of the entanglement between oscillators that interact with the same environment displa...
The effect of a thermal reservoir is investigated on a bipartite Gaussian state. We derive a pre-Lin...
The apparent difficulty in recovering classical nonlinear dynamics and chaos from standard quantum m...
This is the final version. Available from American Physical Society via the DOI in this recordIn thi...
We study entanglement dynamics in a system consisting of a qubit dispersively coupled to a finite-te...
Two forms of dissipation are applied to a system of two coupled harmonic oscillators. Resulting quan...
We investigate how to model Markovian evolution of coupled harmonic oscillators, each of them intera...