Typical elements of quantum networks are made by identical systems, which are the basic particles constituting a resource for quantum information processing. Whether the indistinguishability due to particle identity is an exploitable quantum resource remains an open issue. Here we study independently prepared identical particles showing that, when they spatially overlap, an operational entanglement exists that can be made manifest by means of separated localized measurements. We prove this entanglement is physical in that it can be directly exploited to activate quantum information protocols, such as teleportation. These results establish that particle indistinguishability is a utilizable quantum feature and open the way to new quantum-enha...
Initialization of composite quantum systems into highly entangled states is usually a must to enable...
A complete treatment of open quantum systems made of identical particles has remained elusive due to...
Quantum information and communication processing within quantum networks usually employ identical pa...
Typical elements of quantum networks are made by identical systems, which are the basic particles co...
Quantum networks are typically made of identical subsystems. Exploiting indistinguishability as a di...
Quantum networks are typically made of identical subsystems. Exploiting indistinguishability as a di...
Identical quantum subsystems can possess a property which does not have any classical counterpart: i...
Quantum correlations of identical particles are important for quantum-enhanced technologies. The rec...
The existence of fundamentally identical particles represents a foundational distinction between cla...
International audienceQuantum information and communication processing within quantum networks usual...
International audienceQuantum information and communication processing within quantum networks usual...
International audienceQuantum information and communication processing within quantum networks usual...
Quantum entanglement of identical particles is essential in quantum information theory. Yet, its cor...
A complete treatment of open quantum systems made of identical particles has remained elusive due to...
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...
A complete treatment of open quantum systems made of identical particles has remained elusive due to...
Quantum information and communication processing within quantum networks usually employ identical pa...
Typical elements of quantum networks are made by identical systems, which are the basic particles co...
Quantum networks are typically made of identical subsystems. Exploiting indistinguishability as a di...
Quantum networks are typically made of identical subsystems. Exploiting indistinguishability as a di...
Identical quantum subsystems can possess a property which does not have any classical counterpart: i...
Quantum correlations of identical particles are important for quantum-enhanced technologies. The rec...
The existence of fundamentally identical particles represents a foundational distinction between cla...
International audienceQuantum information and communication processing within quantum networks usual...
International audienceQuantum information and communication processing within quantum networks usual...
International audienceQuantum information and communication processing within quantum networks usual...
Quantum entanglement of identical particles is essential in quantum information theory. Yet, its cor...
A complete treatment of open quantum systems made of identical particles has remained elusive due to...
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...
A complete treatment of open quantum systems made of identical particles has remained elusive due to...
Quantum information and communication processing within quantum networks usually employ identical pa...