We introduce a new strategy to regulate the quantum entanglement in a dispersive-hybrid system where a qubit is directly coupled to a cavity and a resonator. A dramatic transition takes place by only tuning the squeezing parameters associated with the vibrational mode. As the squeezing amplitude becomes larger, the maximal entanglement abruptly falls to zero at specific squeezing phases. It is also possible to generate entanglement for bipartitions from the qubit-cavity-resonator system after applying this strategy. Entangled qubit-cavity states are created through squeezing, even though there is no direct interaction between them. We also analyze the effect of atomic, optical, and vibrational losses on the quantum entanglement. Finally, we...
We present a Hamiltonian which can be used to convert any asymmetric state |φ⟩a|ϕ⟩b of two oscillato...
A scheme is presented for entangling two separated nanomechanical oscillators by injecting broad ban...
We present a scheme for entangling two micromechanical oscillators. The scheme exploits the quantum ...
The generation of entanglement between three identical coupled cavities, eachcontaining a single thr...
Multipartite quantum entanglement is a key resource for ensuring security in quantum network. We sho...
We propose a scheme for the realization of a hybrid, strongly quantum-correlated system formed of an...
Controllable multipartite entanglement is a crucial element in quantum information processing. Here ...
Multipartite entanglement is a key resource for various quantum information tasks. Here, we present ...
We investigate the process of entanglement transfer from a three-mode quantized field to a system of...
We show that two qubits can be entangled by local interactions with an entangled two-mode continuous...
We describe a scheme for entangling mechanical resonators which is efficient beyond the resolved sid...
We describe the transfer of quantum information and correlations from an entangled tripartite bosoni...
Entanglement generation at a macroscopic scale o ers an exciting avenue to de- velop new quantum tec...
We study the significance of Photon/Phonons bunching and antibunching on the dynamics of the quantum...
We present a generic cavity quantum electrodynamics (QED) set-up that can generate different types o...
We present a Hamiltonian which can be used to convert any asymmetric state |φ⟩a|ϕ⟩b of two oscillato...
A scheme is presented for entangling two separated nanomechanical oscillators by injecting broad ban...
We present a scheme for entangling two micromechanical oscillators. The scheme exploits the quantum ...
The generation of entanglement between three identical coupled cavities, eachcontaining a single thr...
Multipartite quantum entanglement is a key resource for ensuring security in quantum network. We sho...
We propose a scheme for the realization of a hybrid, strongly quantum-correlated system formed of an...
Controllable multipartite entanglement is a crucial element in quantum information processing. Here ...
Multipartite entanglement is a key resource for various quantum information tasks. Here, we present ...
We investigate the process of entanglement transfer from a three-mode quantized field to a system of...
We show that two qubits can be entangled by local interactions with an entangled two-mode continuous...
We describe a scheme for entangling mechanical resonators which is efficient beyond the resolved sid...
We describe the transfer of quantum information and correlations from an entangled tripartite bosoni...
Entanglement generation at a macroscopic scale o ers an exciting avenue to de- velop new quantum tec...
We study the significance of Photon/Phonons bunching and antibunching on the dynamics of the quantum...
We present a generic cavity quantum electrodynamics (QED) set-up that can generate different types o...
We present a Hamiltonian which can be used to convert any asymmetric state |φ⟩a|ϕ⟩b of two oscillato...
A scheme is presented for entangling two separated nanomechanical oscillators by injecting broad ban...
We present a scheme for entangling two micromechanical oscillators. The scheme exploits the quantum ...