English

Fault-tolerant fidelity based on few-qubit codes: Parity-check circuits for biased error channels

Quantum Physics 2020-09-22 v1

Abstract

In the shallow sub-threshold regime, fault-tolerant quantum computation requires a tremendous amount of qubits. In this paper, we study the error correction in the deep sub-threshold regime. We estimate the physical error rate for achieving the logical error rates of 106101510^{-6} - 10^{-15} using few-qubit codes, i.e. short repetition codes, small surface codes and the Steane code. Error correction circuits that are efficient for biased error channels are identified. Using the Steane code, when error channels are biased with a ratio of 10310^{-3}, the logical error rate of 101510^{-15} can be achieved with the physical error rate of 10510^{-5}, which is much higher than the physical error rate of 10910^{-9} for depolarising errors.

Keywords

Cite

@article{arxiv.2009.09726,
  title  = {Fault-tolerant fidelity based on few-qubit codes: Parity-check circuits for biased error channels},
  author = {Dawei Jiao and Ying Li},
  journal= {arXiv preprint arXiv:2009.09726},
  year   = {2020}
}

Comments

10 pages, 12 figures