Science Score: 57.0%

This score indicates how likely this project is to be science-related based on various indicators:

  • CITATION.cff file
    Found CITATION.cff file
  • codemeta.json file
    Found codemeta.json file
  • .zenodo.json file
    Found .zenodo.json file
  • DOI references
    Found 1 DOI reference(s) in README
  • Academic publication links
  • Academic email domains
  • Institutional organization owner
  • JOSS paper metadata
  • Scientific vocabulary similarity
    Low similarity (1.5%) to scientific vocabulary
Last synced: 6 months ago · JSON representation ·

Repository

Basic Info
  • Host: GitHub
  • Owner: e-kneip
  • Language: Jupyter Notebook
  • Default Branch: main
  • Size: 265 KB
Statistics
  • Stars: 0
  • Watchers: 1
  • Forks: 0
  • Open Issues: 0
  • Releases: 0
Created over 1 year ago · Last pushed over 1 year ago
Metadata Files
Readme Citation

README.md

qldpc-numerical-simulations

Numerical simulations of the surface code using stim [1] and Pymatching [2] to produce threshold graphs.

[1] Gidney, C. Stim: a fast stabilizer circuit simulator. Quantum 5, 497, DOI: 10.22331/q-2021-07-06-497 (2021)

[2] Higgott, O. & Gidney, C. Sparse blossom: correcting a million errors per core second with minimum-weight matching. arXiv preprint arXiv:2303.15933 (2023)

Owner

  • Name: Eleanor Kneip
  • Login: e-kneip
  • Kind: user
  • Company: Imperial College London

Citation (citation.cff)

cff-version: 1.2.0
message: "If you use this software, please cite it as below."
authors:
- family-names: "Kneip"
  given-names: "Eleanor"
title: "Numerical Simulation of the Surface Code for Varying Distance"
version: 0.0.1
abstract: "A demonstration of the surface code using error models from stim and decoders from Pymatching."
repository-code: "https://github.com/e-kneip/qldpc-numerical-simulations"
# date-released: 2024-11-14

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