We study state engineering through bilinear interactions between two remote qubits and two-mode Gaussian light fields. The attainable two-qubit states span the entire physically allowed region in the entanglement-versus-global-purity plane. Two-mode Gaussian states with maximal entanglement at fixed global and marginal entropies produce maximally entangled two-qubit states in the corresponding entropic diagram. We show that a small set of parameters characterizing extremally entangled two-mode Gaussian states is sufficient to control the engineering of extremally entangled two-qubit states, which can be realized in realistic matter-light scenarios
We investigate the entanglement transfer from a bipartite continuous-variable (CV) system to a pair ...
We demonstrate that for every two-qubit state there is a X-counterpart, i.e., a corresponding two-qu...
We report the creation of a wide range of quantum states with controllable degrees of entanglement a...
We study state engineering through bilinear interactions between two remote qubits and two-mode Gaus...
We experimentally generate and tomographically characterize a mixed, genuinely non-Gaussian bipartit...
We study the relationship between the entanglement, mixedness and energy of two-qubit and two-mode G...
We present a general necessary and sufficient criterion for the possibility of a state transformatio...
A key element in the architecture of a quantum information processing network is a reliable physical...
We show that two qubits can be entangled by local interactions with an entangled two-mode continuous...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
We investigate the process of entanglement transfer from a three-mode quantized field to a system of...
A key element in the architecture of a QIP network is a reliable physical interface between elds and...
We study the optimal way of creating bi-partite entanglement using a general two-qubit interaction. ...
We develop the minimal requirements for the complete entanglement quantification of an arbitrary two...
We provide a standard form for pure Gaussian states of N-mode continuous variable systems with arbit...
We investigate the entanglement transfer from a bipartite continuous-variable (CV) system to a pair ...
We demonstrate that for every two-qubit state there is a X-counterpart, i.e., a corresponding two-qu...
We report the creation of a wide range of quantum states with controllable degrees of entanglement a...
We study state engineering through bilinear interactions between two remote qubits and two-mode Gaus...
We experimentally generate and tomographically characterize a mixed, genuinely non-Gaussian bipartit...
We study the relationship between the entanglement, mixedness and energy of two-qubit and two-mode G...
We present a general necessary and sufficient criterion for the possibility of a state transformatio...
A key element in the architecture of a quantum information processing network is a reliable physical...
We show that two qubits can be entangled by local interactions with an entangled two-mode continuous...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
We investigate the process of entanglement transfer from a three-mode quantized field to a system of...
A key element in the architecture of a QIP network is a reliable physical interface between elds and...
We study the optimal way of creating bi-partite entanglement using a general two-qubit interaction. ...
We develop the minimal requirements for the complete entanglement quantification of an arbitrary two...
We provide a standard form for pure Gaussian states of N-mode continuous variable systems with arbit...
We investigate the entanglement transfer from a bipartite continuous-variable (CV) system to a pair ...
We demonstrate that for every two-qubit state there is a X-counterpart, i.e., a corresponding two-qu...
We report the creation of a wide range of quantum states with controllable degrees of entanglement a...