Constructs a [[34542,23032,d≤310]] rate-2/3 girth-8 quantum LDPC CSS code from two-branch finite-field bases and CPM lifts with no decoder failures in 10^8 trials at p=0.01.
A Factor-Graph Formulation of CSS Syndrome Decoding: Joint BP and Four-State BP
2 Pith papers cite this work. Polarity classification is still indexing.
abstract
For CSS syndrome decoding, the two check matrices impose binary parity-check constraints on the two Pauli error components. The posterior can therefore be written as a binary factor graph with two Tanner graphs coupled by the local joint prior at each qubit. We call the sum-product algorithm on this factorization joint belief propagation (joint BP). Joint BP retains the local channel correlation between the two Pauli components. This note compares joint BP with the four-state Pauli-label factor graph used for four-state BP. The two algorithms are shown to have the same posterior weights, messages, and beliefs after relabeling the four local Pauli states and marginalizing the irrelevant binary component.
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quant-ph 2years
2026 2representative citing papers
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Rate-2/3 Girth-8 (3,18)-Regular Quantum LDPC Codes from Two-Branch Finite-Field Bases and CPM Lifts
Constructs a [[34542,23032,d≤310]] rate-2/3 girth-8 quantum LDPC CSS code from two-branch finite-field bases and CPM lifts with no decoder failures in 10^8 trials at p=0.01.
- A Two-Branch Finite-Field Construction for Regular CSS LDPC Bases