Reed-Muller codes achieve the full achievable rate region on two-user additive-noise channels, and the resulting quantum CSS codes meet the hashing bound across a continuous range of Pauli noise parameters.
A proof that Reed-Muller codes achieve shannon capacity on symmetric channels,
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Reed-Muller Codes for Quantum Pauli and Multiple Access Channels
Reed-Muller codes achieve the full achievable rate region on two-user additive-noise channels, and the resulting quantum CSS codes meet the hashing bound across a continuous range of Pauli noise parameters.