Please use this identifier to cite or link to this item: http://hdl.handle.net/10071/35061
Author(s): Cruz, D.
Monteiro, F. A.
Roque, A.
Coutinho, B. C.
Date: 2025
Title: Fault-tolerant noise guessing decoding of quantum random codes
Journal title: IEEE Transactions on Quantum Engineering
Volume: N/A
Reference: Cruz, D., Monteiro, F. A., Roque, A., & Coutinho, B. C. (2025). Fault-tolerant noise guessing decoding of quantum random codes. IEEE Transactions on Quantum Engineering. https://doi.org/10.1109/TQE.2025.3595778
ISSN: 2689-1808
DOI (Digital Object Identifier): 10.1109/TQE.2025.3595778
Keywords: Fault-tolerance
Noise guessing decoding
Quantum error correction
Quantum random linear codes
Syndrome extraction
Abstract: This work addresses the open question of implementing fault-tolerant QRLCs with feasible computational overhead. We present a new decoder for quantum random linear codes (QRLCs) capable of dealing with imperfect decoding operations. A first approach, introduced by Cruz et al., only considered channel errors, and perfect gates at the decoder. Here, we analyze the fault-tolerant characteristics of QRLCs with a new noise guessing decoding technique, when considering preparation, measurement, and gate errors in the syndrome extraction procedure, while also accounting for error degeneracy. Our findings indicate a threshold error rate (pthreshold) of approximately 2×10-5 in the asymptotic limit, while considering realistic noise levels in the mentioned physical procedures.
Peerreviewed: yes
Access type: Open Access
Appears in Collections:IT-RI - Artigos em revistas científicas internacionais com arbitragem científica

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