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Entangling single atoms over 33 km telecom fibre

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arxiv 2111.15526 v1 pith:TUFWFITA submitted 2021-11-30 quant-ph

Entangling single atoms over 33 km telecom fibre

classification quant-ph
keywords quantumfibrelinksmemoriesefficiententanglementheraldednetwork
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Heralded entanglement between distant quantum memories is the key resource for quantum networks. Based on quantum repeater protocols, these networks will facilitate efficient large-scale quantum communication and distributed quantum computing. However, despite vast efforts, long-distance fibre based network links have not been realized yet. Here we present results demonstrating heralded entanglement between two independent, remote single-atom quantum memories generated over fibre links with a total length up to 33 km. To overcome the attenuation losses in the long optical fibres of photons initially emitted by the Rubidium quantum memories, we employ polarization-preserving quantum frequency conversion to the low loss telecom band. The presented work represents a milestone towards the realization of efficient quantum network links.

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