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Quantum CSS LDPC Codes based on Dyadic Matrices for Belief Propagation-based Decoding

Baldelli, Alessio ; Battaglioni, Massimo; Mandelbaum, Jonathan 1; Miao, Sisi 1; Schmalen, Laurent 1
1 Communications Engineering Lab (CEL), Karlsruher Institut für Technologie (KIT)

Abstract:

Quantum low-density parity-check (QLDPC) codes provide a practical balance between error-correction capability and implementation complexity in quantum error correction (QEC). In this paper, we propose an algebraic construction based on dyadic matrices for designing both classical and quantum LDPC codes. The method first generates classical binary quasi-dyadic LDPC codes whose Tanner graphs have girth at least 6. It is then extended to the Calderbank–Shor–Steane (CSS) framework, where the two component parity-check matrices are built to satisfy the compatibility condition required by the recently introduced CAMEL-ensemble quaternary belief propagation decoder. This compatibility condition ensures that all unavoidable cycles of length 4 are assembled in a single variable node, allowing the mitigation of their detrimental effects by decimating that variable node.


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Originalveröffentlichung
DOI: 10.1109/ISIT62367.2026.11653841
Zugehörige Institution(en) am KIT Communications Engineering Lab (CEL)
Publikationstyp Proceedingsbeitrag
Publikationsmonat/-jahr 06.2026
Sprache Englisch
Identifikator ISBN: 979-8-3315-8004-9
ISSN: 2157-8095
KITopen-ID: 1000197107
Erschienen in 2026 IEEE International Symposium on Information Theory (ISIT)
Veranstaltung IEEE International Symposium on Information Theory (ISIT 2026), Guangzhou, China, 28.06.2026 – 03.07.2026
Verlag Institute of Electrical and Electronics Engineers (IEEE)
Seiten 1–6
Externe Relationen Siehe auch
Schlagwörter Quantum error correction, LDPC codes, CSS codes, QLDPC codes, ensemble decoding, quasi-dyadic codes
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