Quantum networking relies on entanglement distribution between distant nodes, typically realized by swapping procedures. However, entanglement swapping is a demanding task in practice, mainly because of limited effectiveness of entangled photon sources and Bell-state measurements necessary to realize the process. Here we experimentally activate a remote distribution of two-photon polarization entanglement superseding the need for initial entangled pairs and traditional Bell-state measurements. This alternative procedure is accomplished thanks to the controlled spatial indistinguishability of four independent photons in three separated nodes of the network, which enables us to perform localized product-state measurements in the central node ...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
Photonic quantum technology provides a viable route to quantum communication, quantum simulation, an...
Quantum networking relies on entanglement distribution between distant nodes, typically realized by ...
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...
We propose a protocol to perform long-range distribution of near-maximally entangled multiphoton sta...
Quantum information and communication processing within quantum networks usually employ identical pa...
Quantum information and communication processing within quantum networks usually employ identical pa...
21 pages, 4 figuresLike a silver thread, quantum entanglement [1] runs through the foundations and b...
A reliable source of identical (indistinguishable) photons is a prerequisite for exploiting interfer...
Quantum repeaters are critical to the development of quantum networks, enabling rates of entanglemen...
Towards realizing the future quantum internet, a pivotal milestone entails the transition from two-n...
Deterministic sources of multi-photon entanglement are highly attractive for quantum information pro...
The past decade has seen tremendous progress in experimentally realizing the building blocks of quan...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
Photonic quantum technology provides a viable route to quantum communication, quantum simulation, an...
Quantum networking relies on entanglement distribution between distant nodes, typically realized by ...
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...
We propose a protocol to perform long-range distribution of near-maximally entangled multiphoton sta...
Quantum information and communication processing within quantum networks usually employ identical pa...
Quantum information and communication processing within quantum networks usually employ identical pa...
21 pages, 4 figuresLike a silver thread, quantum entanglement [1] runs through the foundations and b...
A reliable source of identical (indistinguishable) photons is a prerequisite for exploiting interfer...
Quantum repeaters are critical to the development of quantum networks, enabling rates of entanglemen...
Towards realizing the future quantum internet, a pivotal milestone entails the transition from two-n...
Deterministic sources of multi-photon entanglement are highly attractive for quantum information pro...
The past decade has seen tremendous progress in experimentally realizing the building blocks of quan...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
Photonic quantum technology provides a viable route to quantum communication, quantum simulation, an...