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An architecture for quantum networking of neutral atom processors

Quantum Physics 2024-06-12 v3 Atomic Physics

Abstract

Development of a network for remote entanglement of quantum processors is an outstanding challenge in quantum information science. We propose and analyze a two-species architecture for remote entanglement of neutral atom quantum computers based on integration of optically trapped atomic qubit arrays with fast optics for photon collection. One of the atomic species is used for atom-photon entanglement, and the other species provides local processing. We compare the achievable rates of remote entanglement generation for two optical approaches: free space photon collection with a lens and a near-concentric, long working distance resonant cavity. Laser cooling and trapping within the cavity removes the need for mechanical transport of atoms from a source region, which allows for a fast repetition rate. Using optimized values of the cavity finesse, remote entanglement generation rates >103 s1> 10^3~\rm s^{-1} are predicted for experimentally feasible parameters.

Keywords

Cite

@article{arxiv.2202.01634,
  title  = {An architecture for quantum networking of neutral atom processors},
  author = {C. B. Young and A. Safari and P. Huft and J. Zhang and E. Oh and R. Chinnarasu and M. Saffman},
  journal= {arXiv preprint arXiv:2202.01634},
  year   = {2024}
}

Comments

v3: minor revisions

R2 v1 2026-06-24T09:18:02.726Z