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Published July 2022 | Published + Accepted Version
Journal Article Open

Decoding Merged Color-Surface Codes and Finding Fault-Tolerant Clifford Circuits Using Solvers for Satisfiability Modulo Theories

Abstract

Universal fault-tolerant quantum computers will require the use of efficient protocols to implement encoded operations necessary in the execution of algorithms. In this work, we show how SMT solvers can be used to automate the construction of Clifford circuits with certain fault-tolerance properties and we apply our techniques to a fault-tolerant magic-state-preparation protocol. Part of the protocol requires converting magic states encoded in the color code to magic states encoded in the surface code. Since the teleportation step involves decoding a color code merged with a surface code, we develop a decoding algorithm that is applicable to such codes.

Additional Information

Published by the American Physical Society under the terms of the Creative Commons Attribution 4.0 International license. Further distribution of this work must maintain attribution to the author(s) and the published article's title, journal citation, and DOI. (Received 7 February 2022; revised 14 April 2022; accepted 16 May 2022; published 28 July 2022) We thank Markus Kesselring for his comments on our manuscript and for pointing out the connection between our lattice-surgery methods and the use of domain walls between the color code and surface code.

Attached Files

Published - PhysRevApplied.18.014072.pdf

Accepted Version - 2201.12450.pdf

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Additional details

Created:
August 22, 2023
Modified:
October 23, 2023