This technical note uses a system theoretic approach to show that classical linear time invariant controllers cannot generate steady state entanglement in a bipartite Gaussian quantum system which is initialized in a Gaussian state. The technical note also shows that the use of classical linear controllers cannot generate entanglement in a finite time from a bipartite system initialized in a separable Gaussian state. The approach reveals connections between system theoretic concepts and the well known physical principle that local operations and classical communications cannot generate entangled states starting from separable states
In the article, we investigate entanglement dynamics defined by time-dependent linear generators. We...
We study the dynamical generation of entanglement for a two-body interacting system, starting from a...
In this thesis, we examine steady-state entanglement in bipartite systems. In the uprising field of ...
This paper uses a system theoretic approach to show that classical linear time invariant controllers...
We analyze numerically the dynamical generation of quantum entanglement in a system of two interacti...
We address the interaction of two Gaussian states through bilinear exchange Hamiltonians and analyze...
A necessary and sufficient condition for characterization and quantification of entanglement of any ...
3noWe consider two qubits interacting with a common bosonic bath, but not directly between themselve...
We study dynamical generation of entanglement in bipartite quantum systems, characterized by purity ...
Entanglement as a collective property of quantum systems follows its own dynamics as environmental d...
We study general quantum correlations of continuous variable Gaussian states and their interplay wit...
Development of robust quantum control has been challenging and there are numerous obstacles to apply...
Pure Gaussian states are of great practical importance in continuous-variable quantum information ...
We review the theory of continuous-variable entanglement with special emphasis on foundational aspec...
A necessary and sufficient condition for detection of entanglement of a bipartite Gaussian state is ...
In the article, we investigate entanglement dynamics defined by time-dependent linear generators. We...
We study the dynamical generation of entanglement for a two-body interacting system, starting from a...
In this thesis, we examine steady-state entanglement in bipartite systems. In the uprising field of ...
This paper uses a system theoretic approach to show that classical linear time invariant controllers...
We analyze numerically the dynamical generation of quantum entanglement in a system of two interacti...
We address the interaction of two Gaussian states through bilinear exchange Hamiltonians and analyze...
A necessary and sufficient condition for characterization and quantification of entanglement of any ...
3noWe consider two qubits interacting with a common bosonic bath, but not directly between themselve...
We study dynamical generation of entanglement in bipartite quantum systems, characterized by purity ...
Entanglement as a collective property of quantum systems follows its own dynamics as environmental d...
We study general quantum correlations of continuous variable Gaussian states and their interplay wit...
Development of robust quantum control has been challenging and there are numerous obstacles to apply...
Pure Gaussian states are of great practical importance in continuous-variable quantum information ...
We review the theory of continuous-variable entanglement with special emphasis on foundational aspec...
A necessary and sufficient condition for detection of entanglement of a bipartite Gaussian state is ...
In the article, we investigate entanglement dynamics defined by time-dependent linear generators. We...
We study the dynamical generation of entanglement for a two-body interacting system, starting from a...
In this thesis, we examine steady-state entanglement in bipartite systems. In the uprising field of ...