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Limitations in quantum computing from resource constraints

Quantum Physics 2022-02-24 v3 Mesoscale and Nanoscale Physics

Abstract

Fault-tolerant schemes can use error correction to make a quantum computation arbitrarily ac- curate, provided that errors per physical component are smaller than a certain threshold and in- dependent of the computer size. However in current experiments, physical resource limitations like energy, volume or available bandwidth induce error rates that typically grow as the computer grows. Taking into account these constraints, we show that the amount of error correction can be opti- mized, leading to a maximum attainable computational accuracy. We find this maximum for generic situations where noise is scale-dependent. By inverting the logic, we provide experimenters with a tool to finding the minimum resources required to run an algorithm with a given computational accuracy. When combined with a full-stack quantum computing model, this provides the basis for energetic estimates of future large-scale quantum computers.

Keywords

Cite

@article{arxiv.2007.01966,
  title  = {Limitations in quantum computing from resource constraints},
  author = {Marco Fellous-Asiani and Jing Hao Chai and Robert S. Whitney and Alexia Auffèves and Hui Khoon Ng},
  journal= {arXiv preprint arXiv:2007.01966},
  year   = {2022}
}

Comments

9 pages + Appendices; 6 figures. Improved presentation in the updated version, with a new discussion on crosstalk