Quantum networks are typically made of identical subsystems. Exploiting indistinguishability as a direct quantum resource would thus be highly desirable. We show this is achievable by spatially localized measurements, enabling teleportation and entanglement swapping protocols
We extend a procedure exploiting spatial indistinguishability of identical particles to recover the ...
Quantum information and communication processing within quantum networks usually employ identical pa...
We extend a procedure exploiting spatial indistinguishability of identical particles to recover the ...
Quantum networks are typically made of identical subsystems. Exploiting indistinguishability as a di...
Typical elements of quantum networks are made by identical systems, which are the basic particles co...
Typical elements of quantum networks are made by identical systems, which are the basic particles co...
Identical quantum subsystems can possess a property which does not have any classical counterpart: i...
Quantum networking relies on entanglement distribution between distant nodes, typically realized by ...
Quantitative control of spatial indistinguishability of identical subsystems as a direct quantum res...
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...
Initialization of composite quantum systems into highly entangled states is important to enable thei...
Quantum networking relies on entanglement distribution between distant nodes, typically realized by ...
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 ...
Quantum information and communication processing within quantum networks usually employ identical pa...
We extend a procedure exploiting spatial indistinguishability of identical particles to recover the ...
Quantum networks are typically made of identical subsystems. Exploiting indistinguishability as a di...
Typical elements of quantum networks are made by identical systems, which are the basic particles co...
Typical elements of quantum networks are made by identical systems, which are the basic particles co...
Identical quantum subsystems can possess a property which does not have any classical counterpart: i...
Quantum networking relies on entanglement distribution between distant nodes, typically realized by ...
Quantitative control of spatial indistinguishability of identical subsystems as a direct quantum res...
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...
Initialization of composite quantum systems into highly entangled states is important to enable thei...
Quantum networking relies on entanglement distribution between distant nodes, typically realized by ...
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 ...
Quantum information and communication processing within quantum networks usually employ identical pa...
We extend a procedure exploiting spatial indistinguishability of identical particles to recover the ...