A programmable 2D toric oscillator network enables efficient routing for bivariate bicycle LDPC codes, reducing long-range couplers to O(sqrt(n)) and achieving 3.06% logical error rate per cycle in simulations for the [[18,4,4]] code.
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Degenerate BP decoders achieve capacity-achieving or near-capacity performance for quantum erasure correction in linear time on bicycle, product, and topological stabilizer codes.
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Efficient Routing of Quantum LDPC Codes on Programmable 2D Toric Architectures
A programmable 2D toric oscillator network enables efficient routing for bivariate bicycle LDPC codes, reducing long-range couplers to O(sqrt(n)) and achieving 3.06% logical error rate per cycle in simulations for the [[18,4,4]] code.
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Degenerate quantum erasure decoding
Degenerate BP decoders achieve capacity-achieving or near-capacity performance for quantum erasure correction in linear time on bicycle, product, and topological stabilizer codes.