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Continuous-variable gate teleportation and bosonic-code error correction

journal contribution
posted on 2024-11-02, 16:02 authored by Blayney Walshe, Ben Baragiola, Rafael Alexander, Nicolas MenicucciNicolas Menicucci
We examine continuous-variable gate teleportation using entangled states made from pure product states sent through a beam splitter. We show that such states are Choi states for a (typically) nonunitary gate, and we derive the associated Kraus operator for teleportation, which can be used to realize non-Gaussian, nonunitary quantum operations on an input state. With this result, we show how gate teleportation is used to perform error correction on bosonic qubits encoded using the Gottesman-Kitaev-Preskill (GKP) code. This result is presented in the context of deterministically produced macronode cluster states, generated by constant-depth linear optical networks, supplemented with a probabilistic supply of GKP states. The upshot of our technique is that state injection for both gate teleportation and error correction can be achieved without active squeezing operations - an experimental bottleneck for quantum optical implementations.

Funding

ARC Centre of Excellence for Quantum Computation and Communication Technology

Australian Research Council

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History

Journal

Physical Review A

Volume

102

Number

62411

Issue

6

Start page

1

End page

19

Total pages

19

Publisher

American Physical Society

Place published

United States

Language

English

Copyright

© 2020 American Physical Society.

Former Identifier

2006104472

Esploro creation date

2021-11-25

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