English

Tailoring fusion-based error correction for high thresholds to biased fusion failures

Quantum Physics 2023-09-26 v2

Abstract

We introduce fault-tolerant (FT) architectures for error correction with the XZZX cluster state based on performing measurements of two-qubit Pauli operators ZZZ\otimes Z and XXX\otimes X, or fusions, on a collection of few-body entangled resource states. Our construction is tailored to be effective against noise that predominantly causes faulty XXX\otimes X measurements during fusions. This feature offers practical advantage in linear optical quantum computing with dual-rail photonic qubits, where failed fusions only erase XXX\otimes X measurement outcomes. By applying our construction to this platform, we find a record high FT threshold to fusion failures exceeding 25%25\% in the experimentally relevant regime of non-zero loss rate per photon, considerably simplifying hardware requirements.

Keywords

Cite

@article{arxiv.2301.00019,
  title  = {Tailoring fusion-based error correction for high thresholds to biased fusion failures},
  author = {Kaavya Sahay and Jahan Claes and Shruti Puri},
  journal= {arXiv preprint arXiv:2301.00019},
  year   = {2023}
}

Comments

7+6 pages, 4+6 figures, comments welcome

R2 v1 2026-06-28T07:57:43.895Z