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Encoding qubits into oscillators with atomic ensembles and squeezed light

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journal contribution
posted on 2024-11-23, 10:27 authored by Keith Motes, Ben Baragiola, Alexei Gilchrist, Nicolas MenicucciNicolas Menicucci
The Gottesman-Kitaev-Preskill (GKP) encoding of a qubit within an oscillator provides a number of advantages when used in a fault-tolerant architecture for quantum computing, most notably that Gaussian operations suffice to implement all single- and two-qubit Clifford gates. The main drawback of the encoding is that the logical states themselves are challenging to produce. Here we present a method for generating optical GKP-encoded qubits by coupling an atomic ensemble to a squeezed state of light. Particular outcomes of a subsequent spin measurement of the ensemble herald successful generation of the resource state in the optical mode. We analyze the method in terms of the resources required (total spin and amount of squeezing) and the probability of success. We propose a physical implementation using a Faraday-based quantum nondemolition interaction.

Funding

ARC Centre of Excellence for Engineered Quantum Systems

Australian Research Council

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ARC Centre of Excellence for Quantum Computation and Communication Technology

Australian Research Council

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Quantum computation and relativistic quantum information

Australian Research Council

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History

Related Materials

  1. 1.
    DOI - Is published in 10.1103/PhysRevA.95.053819
  2. 2.
    ISSN - Is published in 24699926

Journal

Physical Review A

Volume

95

Number

053819

Issue

5

Start page

1

End page

14

Total pages

14

Publisher

American Physical Society

Place published

United States

Language

English

Copyright

© 2017 American Physical Society

Former Identifier

2006074567

Esploro creation date

2020-06-22

Fedora creation date

2017-06-29

Open access

  • Yes