Published June 2016 | Version Published
Journal Article Open

Self correction requires Energy Barrier for Abelian quantum doubles

  • 1. ROR icon California Institute of Technology
  • 2. ROR icon McGill University
  • 3. ROR icon IBM Research - Thomas J. Watson Research Center

Abstract

We rigorously establish an Arrhenius law for the mixing time of quantum doubles based on any Abelian group Zd. We have made the concept of the energy barrier therein mathematically well-defined, it is related to the minimum energy cost the environment has to provide to the system in order to produce a generalized Pauli error, maximized for any generalized Pauli errors, not only logical operators. We evaluate this generalized energy barrier in Abelian quantum double models and find it to be a constant independent of system size. Thus, we rule out the possibility of entropic protection for this broad group of models.

Additional Information

©2016 American Physical Society. Received 22 February 2016. We thank B. Brown and J. Preskill for helpful discussions and for valuable comments on an early version of the draft. We acknowledge funding provided by the Institute for Quantum Information and Matter, an NSF Physics Frontiers Center (NFS Grants No. PHY-1125565 and No. PHY-0803371) with support of the Gordon and Betty Moore Foundation (Grant No. GBMF-12500028). O.L.C. is partially supported by Fonds de Recherche Quebec-Nature et Technologies and the Natural Sciences and Engineering Research Council of Canada (NSERC).

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Additional details

Identifiers

Eprint ID
68601
DOI
10.1103/PhysRevA.93.052337
Resolver ID
CaltechAUTHORS:20160622-143120606

Funding

National Science Foundation
PHY-1125565
Gordon and Betty Moore Foundation
GBMF-2644
Fonds de Recherche QuebecNature et Technologies
Natural Sciences and Engineering Research Council of Canada (NSERC)

Dates

Created
2016-06-22
Created from EPrint's datestamp field
Updated
2021-11-11
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