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Remote entanglement distribution in a quantum network via multinode indistinguishability of photons

Quantum Physics 2022-09-16 v3

Abstract

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 acting as a trigger. This experiment proves that the inherent indistinguishability of identical particles supplies new standards for feasible quantum communication in multinode photonic quantum networks.

Keywords

Cite

@article{arxiv.2107.03999,
  title  = {Remote entanglement distribution in a quantum network via multinode indistinguishability of photons},
  author = {Yan Wang and Ze-Yan Hao and Zheng-Hao Liu and Kai Sun and Jin-Shi Xu and Chuan-Feng Li and Guang-Can Guo and Alessia Castellini and Bruno Bellomo and Giuseppe Compagno and Rosario Lo Franco},
  journal= {arXiv preprint arXiv:2107.03999},
  year   = {2022}
}

Comments

5+5 pages, 3+3 figures, one table. Updated version