Simple logical quantum computation with concatenated symplectic double codes

Fuente: arXiv
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Autori principali: Berthusen, Noah, Durso-Sabina, Elijah
Natura: Preprint
Pubblicazione: 2025
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author Berthusen, Noah
Durso-Sabina, Elijah
author_facet Berthusen, Noah
Durso-Sabina, Elijah
contents There have been significant recent advances in constructing theoretical and practical quantum error correcting codes that function well as quantum memories; however, performing fault-tolerant logical gates on these codes is less studied, and the protocols that do exist often require significant complexity. Building off the symplectic double construction, we investigate concatenated symplectic double codes, which have a rich set of logical gates implementable using only physical single-qubit gates and qubit relabeling. Combined with an injected logical phase gate, the full Clifford group on a single codeblock is achieved through a functionally simple circuit. We perform circuit-level simulations of state preparation and quantum error correction on these codes and show that they have promising performance at near state-of-the-art physical error rates. As such, we argue that concatenated symplectic double codes are strong contenders as the underlying computational code on medium- to large-scale quantum computers.
format Preprint
id arxiv_https___arxiv_org_abs_2510_18753
institution arXiv
publishDate 2025
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spellingShingle Simple logical quantum computation with concatenated symplectic double codes
Berthusen, Noah
Durso-Sabina, Elijah
Quantum Physics
There have been significant recent advances in constructing theoretical and practical quantum error correcting codes that function well as quantum memories; however, performing fault-tolerant logical gates on these codes is less studied, and the protocols that do exist often require significant complexity. Building off the symplectic double construction, we investigate concatenated symplectic double codes, which have a rich set of logical gates implementable using only physical single-qubit gates and qubit relabeling. Combined with an injected logical phase gate, the full Clifford group on a single codeblock is achieved through a functionally simple circuit. We perform circuit-level simulations of state preparation and quantum error correction on these codes and show that they have promising performance at near state-of-the-art physical error rates. As such, we argue that concatenated symplectic double codes are strong contenders as the underlying computational code on medium- to large-scale quantum computers.
title Simple logical quantum computation with concatenated symplectic double codes
topic Quantum Physics
url https://arxiv.org/abs/2510.18753