English

Multipartite Entanglement Swapping and Mechanical Cluster States

Quantum Physics 2019-03-27 v1 Other Condensed Matter Applied Physics Optics

Abstract

We present a protocol for generating multipartite quantum correlations across a quantum network with a continuous-variable architecture. An arbitrary number of users possess two-mode entangled states, keeping one mode while sending the other to a central relay. Here a suitable multipartite Bell detection is performed which conditionally generates a cluster state on the retained modes. This cluster state can be suitably manipulated by the parties and used for tasks of quantum communication in a fully optical scenario. More interestingly, the protocol can be used to create a purely-mechanical cluster state starting from a supply of optomechanical systems. We show that detecting the optical parts of optomechanical cavities may efficiently swap entanglement into their mechanical modes, creating cluster states up to 5 modes under suitable cryogenic conditions.

Keywords

Cite

@article{arxiv.1712.08085,
  title  = {Multipartite Entanglement Swapping and Mechanical Cluster States},
  author = {Carlo Ottaviani and Cosmo Lupo and Alessandro Ferraro and Mauro Paternostro and Stefano Pirandola},
  journal= {arXiv preprint arXiv:1712.08085},
  year   = {2019}
}

Comments

REVTeX. 5 pages. 2 figures. Comments are welcome

R2 v1 2026-06-22T23:26:19.134Z