We address the problem of entanglement protection against surrounding noise by a procedure suitably exploiting spatial indistinguishability of identical subsystems. To this purpose, we take two initially separated and entangled identical qubits interacting with two independent noisy environments. Three typical models of environments are considered: amplitude damping channel, phase damping channel and depolarizing channel. After the interaction, we deform the wave functions of the two qubits to make them spatially overlap before performing spatially localized operations and classical communication (sLOCC) and eventually computing the entanglement of the resulting state. This way, we show that spatial indistinguishability of identical qubits ...
Typical elements of quantum networks are made by identical systems, which are the basic particles co...
This study proposes a procedure for the robust preparation of maximally entangled states of identica...
Quantum entanglement of identical particles is essential in quantum information theory. Yet, its cor...
We address the problem of entanglement protection against surrounding noise by a procedure suitably ...
We extend a procedure exploiting spatial indistinguishability of identical particles to recover the ...
We extend a procedure exploiting spatial indistinguishability of identical particles to recover the ...
We extend a procedure exploiting spatial indistinguishability of identical particles to recover the ...
Initialization of composite quantum systems into highly entangled states is usually a must to enable...
Initialization of composite quantum systems into highly entangled states is usually a must to enable...
Initialization of composite quantum systems into highly entangled states is important to enable thei...
Identical quantum subsystems can possess a property which does not have any classical counterpart: i...
A complete treatment of open quantum systems made of identical particles has remained elusive due to...
A complete treatment of open quantum systems made of identical particles has remained elusive due to...
Typical elements of quantum networks are made by identical systems, which are the basic particles co...
Quantitative control of spatial indistinguishability of identical subsystems as a direct quantum res...
Typical elements of quantum networks are made by identical systems, which are the basic particles co...
This study proposes a procedure for the robust preparation of maximally entangled states of identica...
Quantum entanglement of identical particles is essential in quantum information theory. Yet, its cor...
We address the problem of entanglement protection against surrounding noise by a procedure suitably ...
We extend a procedure exploiting spatial indistinguishability of identical particles to recover the ...
We extend a procedure exploiting spatial indistinguishability of identical particles to recover the ...
We extend a procedure exploiting spatial indistinguishability of identical particles to recover the ...
Initialization of composite quantum systems into highly entangled states is usually a must to enable...
Initialization of composite quantum systems into highly entangled states is usually a must to enable...
Initialization of composite quantum systems into highly entangled states is important to enable thei...
Identical quantum subsystems can possess a property which does not have any classical counterpart: i...
A complete treatment of open quantum systems made of identical particles has remained elusive due to...
A complete treatment of open quantum systems made of identical particles has remained elusive due to...
Typical elements of quantum networks are made by identical systems, which are the basic particles co...
Quantitative control of spatial indistinguishability of identical subsystems as a direct quantum res...
Typical elements of quantum networks are made by identical systems, which are the basic particles co...
This study proposes a procedure for the robust preparation of maximally entangled states of identica...
Quantum entanglement of identical particles is essential in quantum information theory. Yet, its cor...