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An entangled-LED-driven quantum relay over 1 km


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Abstract

Quantum cryptography allows confidential information to be communicated between two parties, with secrecy guaranteed by the laws of nature alone. However, upholding guaranteed secrecy over networks poses a further challenge, as classical receive-and-resend routing nodes can only be used conditional of trust by the communicating parties, which arguably diminishes the value of the underlying quantum cryptography. Quantum relays offer a potential solution by teleporting qubits from a sender to a receiver, without demanding additional trust from end users. Here we demonstrate the operation of a quantum relay over 1 km of optical fibre, which teleports a sequence of photonic quantum bits to a receiver by utilising entangled photons emitted by a semiconductor light-emitting diode. The average relay fidelity of the link is 0.90±0.03, exceeding the classical bound of 0.75 for the set of states used, and sufficiently high to allow error correction. The fundamentally low multiphoton emission statistics and the integration potential of the source present an appealing platform for future quantum networks.

Description

Journal Title

npj Quantum Information

Conference Name

Journal ISSN

2056-6387
2056-6387

Volume Title

2

Publisher

Springer Nature

Rights and licensing

Except where otherwised noted, this item's license is described as Attribution 2.0 UK: England & Wales
Sponsorship
Engineering and Physical Sciences Research Council (EP/H022384/1)
The authors would like to acknowledge partial financial support through the UK EPSRC and the EU Marie Curie Initial Training Network Spin-optronics.