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September 27, 2025Physical Review Letters13 citationsOpen Access

Constant-Overhead Fault-Tolerant Bell-Pair Distillation Using High-Rate Codes

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JAJ. Pablo Bonilla AtaidesHZHengyun ZhouQXQian Xu

Key Points

  • A constant distillation rate is maintained while achieving fault tolerance for input bell-pair infidelities below 10%.
  • Full circuit-level analysis confirms efficiency without unencoding overhead, utilizing quantum low-density parity-check codes.
  • The method eliminates extra overhead to optimize resource usage in distributed quantum computing applications.
  • These findings highlight a practical advancement toward more effective quantum networks and computing systems.

Abstract

We present a fault-tolerant Bell-pair distillation scheme achieving constant overhead through high-rate quantum low-density parity-check (qLDPC) codes. Our approach maintains a constant distillation rate equal to the code rate while requiring no additional overhead beyond the physical qubits of the code. Full circuit-level analysis demonstrates fault-tolerance for input Bell-pair infidelities below a threshold ∼10%, readily achievable with near-term capabilities. Unlike previous proposals, our scheme keeps the output Bell pairs encoded in qLDPC codes at each node, eliminating unencoding overhead and enabling direct use in distributed quantum applications through recent advances in qLDPC computation. These results establish qLDPC-based distillation as a practical route toward resource-efficient quantum networks and distributed quantum computing.

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Cite This Study

Ataides et al. (2025) studied this question.

synapsesocial.com/papers/68d7b3ddeebfec0fc52366c9https://doi.org/10.1103/s39k-r2kq
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