4.6 Article

Topological order and memory time in marginally-self-correcting quantum memory

期刊

PHYSICAL REVIEW A
卷 95, 期 3, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevA.95.032324

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资金

  1. Summer Undergraduate Research Fellowship (SURF)
  2. NSF at the California Institute of Technology [PHY-1125565]
  3. Government of Canada through Industry Canada
  4. Province of Ontario through the Ministry of Research and Innovation

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We examine two proposals for marginally-self-correcting quantum memory: the cubic code by Haah and the welded code by Michnicki. In particular, we prove explicitly that they are absent of topological order above zero temperature, as their Gibbs ensembles can be prepared via a short-depth quantum circuit from classical ensembles. Our proof technique naturally gives rise to the notion of free energy associated with excitations. Further, we develop a framework for an ergodic decomposition of Davies generators in CSS codes which enables formal reduction to simpler classical memory problems. We then show that memory time in the welded code is doubly exponential in inverse temperature via the Peierls argument. These results introduce further connections between thermal topological order and self-correction from the viewpoint of free energy and quantum circuit depth.

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