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September 29, 20251 citationsOpen Access

Decoding across transversal Clifford gates in the surface code

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MSMarc Serra-PeraltaMSMackenzie H. ShawBTBarbara M. Terhal

Key Points

  • The approach employs a minimum-weight-perfect-matching (MWPM) decoder for efficient decoding across transversal gates.
  • Windowed logical observable matching decoders address computational efficiency under slow resets and offer performance trade-offs.
  • Identifying errors that scale sublinearly in distance can lead to logical failures, necessitating adaptive decoding methods.
  • The study highlights the importance of improving fast logic decoding for practical applications in quantum computing.

Abstract

Transversal logical gates offer the opportunity for fast and low-noise logic, particularly when interspersed by a single round of parity check measurements of the underlying code. Using such circuits for the surface code requires decoding across logical gates, complicating the decoding task. We show how one can decode across an arbitrary sequence of transversal gates for the unrotated surface code, using a fast "logical observable" minimum-weight-perfect-matching (MWPM) based decoder, and benchmark its performance in Clifford circuits under circuit-level noise. We propose windowed logical observable matching decoders to address the problem of fully efficient decoding: our basic windowed decoder is computationally efficient under the restriction of quiescent (slow) resets. Our two-step windowed decoder can be computationally inefficient but allows fast resets. For both windowed decoders we identify errors which scale sublinearly in d - depending on the structure of the circuit - which can lead to logical failure, and we propose methods to adapt the decoding to remove such failures. Our work highlights the complexity and interest in efficient decoding of fast logic for the surface code.

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Cite This Study

Serra-Peralta et al. (2025) studied this question.

synapsesocial.com/papers/68da58d1c1728099cfd10eb9https://doi.org/10.48550/arxiv.2505.13599
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

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  4. 4Progressive-Proximity Bit-Flipping for Decoding Surface Codes2024
  5. 5Cross-Cap Defects and Fault-Tolerant Logical Gates in the Surface Code and the Honeycomb Floquet Code2024 · 11 citations