A high-rate non-LDPC CSS code family with parameters [[n, √n, Θ(n^β)]] (β≈0.2823) is constructed from a base [[n0,2,d0]] code and provably admits a constant-depth complete transversal logical Clifford ISA of targeted S̄, √X̄, and CZ̄ gates.
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A teleportation-based parallelization architecture for neutral-atom quantum error correction delivers up to 3x speedup over extractor methods at fixed space cost and enables simulated quantum advantage at 11,495 atoms and 15-hour runtime.
GeneCS compiler reduces ancillary qubits and checks by over 85% on average for single- and cross-code logical operations on stabilizer codes while preserving error rates and scaling to over 10,000 qubits.
citing papers explorer
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Quantum Logic Codes: Complete Transversal Logical Clifford Instruction Sets for High-Rate Stabilizer Quantum Error Correcting Codes
A high-rate non-LDPC CSS code family with parameters [[n, √n, Θ(n^β)]] (β≈0.2823) is constructed from a base [[n0,2,d0]] code and provably admits a constant-depth complete transversal logical Clifford ISA of targeted S̄, √X̄, and CZ̄ gates.
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Architecting Early Fault Tolerant Neutral Atoms Systems with Quantum Advantage
A teleportation-based parallelization architecture for neutral-atom quantum error correction delivers up to 3x speedup over extractor methods at fixed space cost and enables simulated quantum advantage at 11,495 atoms and 15-hour runtime.
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GeneCS: Synthesizing Resource-Efficient Code Surgery for Arbitrary Quantum Stabilizer Codes
GeneCS compiler reduces ancillary qubits and checks by over 85% on average for single- and cross-code logical operations on stabilizer codes while preserving error rates and scaling to over 10,000 qubits.