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Quantum error correction in a time-dependent transverse field Ising model

ORAL

Abstract

We describe a simple quantum error correcting code built out of a time-dependent transverse field Ising model. The code is similar to a repetition code, but has two advantages: an N-qubit code can be implemented with a finite-depth spatially local unitary circuit, and it can subsequently protect against both X and Z errors if N≥10 is even. We propose an implementation of this code with 10 ultracold Rydberg atoms in optical tweezers, along with further generalizations of the code.

Publication: https://journals.aps.org/pra/abstract/10.1103/PhysRevA.106.022432<br>https://arxiv.org/abs/2205.12998

Presenters

  • Yifan Hong

    University of Colorado, Boulder

Authors

  • Yifan Hong

    University of Colorado, Boulder

  • Jeremy T Young

    JILA

  • Adam M Kaufman

    JILA,CU Boulder

  • Andrew Lucas

    University of Colorado, Boulder