Fault-tolerant noise guessing decoding of quantum random codes
July 01, 2024 Β· Declared Dead Β· π IEEE Transactions on Quantum Engineering
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Authors
Diogo Cruz, Francisco A. Monteiro, AndrΓ© Roque, Bruno C. Coutinho
arXiv ID
2407.01658
Category
quant-ph: Quantum Computing
Cross-listed
cs.IT
Citations
2
Venue
IEEE Transactions on Quantum Engineering
Last Checked
5 months ago
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 ($\pth$) of approximately $\pnum$ in the asymptotic limit, while considering realistic noise levels in the mentioned physical procedures.
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