4.6 Article

Quantum repeaters based on two species trapped ions

Journal

NEW JOURNAL OF PHYSICS
Volume 21, Issue -, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/1367-2630/ab2a45

Keywords

quantum repeaters; two species trapped ions; quantum key distribution

Funding

  1. Office of the Secretary of Defense, Quantum Science and Engineering Program
  2. ARL-CDQI [W911NF-15-2-0067, W911NF-18-2-0237]
  3. NSF [EFMA-1640959]
  4. Packard Foundation [2013-39273]
  5. ARO
  6. IARPA LogiQ program
  7. AFOSR project on Quantum Networks
  8. MURI on Quantum Measurement and Verification
  9. ARL Center for Distributed Quantum Information
  10. National Science Foundation Physics Frontier Center at JQI

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We examine the viability of quantum repeaters based on two-species trapped ion modules for long-distance quantum key distribution. Repeater nodes comprised of ion-trap modules of co-trapped ions of distinct species are considered. The species used for communication qubits has excellent optical properties while the other longer lived species serves as a memory qubit in the modules. Each module interacts with the network only via single photons emitted by the communication ions. Coherent Coulomb interaction between ions is utilized to transfer quantum information between the communication and memory ions and to achieve entanglement swapping between two memory ions. We describe simple modular quantum repeater architectures realizable with the ion-trap modules and numerically study the dependence of the quantum key distribution rate on various experimental parameters, including coupling efficiency, gate infidelity, operation time and length of the elementary links. Our analysis suggests crucial improvements necessary in a physical implementation for co-trapped two-species ions to be a competitive platform in long-distance quantum communication.

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