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CP2K: An electronic structure and molecular dynamics software package - Quickstep: Efficient and accurate electronic structure calculations

The Journal of Chemical Physics · 2020 · Vol. 152(19) · pp. 194103–194103
Thomas D. KühneMarcella IannuzziMauro Del BenVladimir V. RybkinPatrick SeewaldFrederick SteinTeodoro LainoRustam Z. KhaliullinOle SchüttFlorian SchiffmannDorothea GolzeJan WilhelmSergey K. ChulkovMohammad Hossein Bani-HashemianValéry WeberUrban BorštnikMathieu TaillefumierAlice Shoshana JakobovitsAlfio LazzaroHans PabstTiziano MüllerRobert R. SchadeManuel GuidonSamuel AndermattNico HolmbergGregory K. SchenterAnna HehnAugustin BussyFabian BelleflammeGloria TabacchiAndreas GlößMichael LassIain BethuneChristopher J. MundyChristian PlesslMatthew B. WatkinsJoost VandeVondeleMatthias KrackJürg Hutter

Abstract

CP2K is an open source electronic structure and molecular dynamics software package to perform atomistic simulations of solid-state, liquid, molecular, and biological systems. It is especially aimed at massively parallel and linear-scaling electronic structure methods and state-of-the-art ab initio molecular dynamics simulations. Excellent performance for electronic structure calculations is achieved using novel algorithms implemented for modern high-performance computing systems. This review revisits the main capabilities of CP2K to perform efficient and accurate electronic structure simulations. The emphasis is put on density functional theory and multiple post-Hartree-Fock methods using the Gaussian and plane wave approach and its augmented all-electron extension.

Advanced Chemical Physics StudiesSpectroscopy and Quantum Chemical StudiesMolecular Junctions and NanostructuresElectronic structureMolecular dynamicsComputer scienceMassively parallelLinear scaleGaussianStatistical physicsSoftwareComputational scienceDensity functional theory

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • Compute Canada
  • European Commission
  • Deutsche Forschungsgemeinschaft
  • Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
  • Universität Paderborn
  • Centro Svizzero di Calcolo Scientifico
  • National Supercomputing Centre Singapore
  • Natural Sciences and Engineering Research Council of Canada
  • Engineering and Physical Sciences Research Council
  • Basic Energy Sciences
  • Chemical Sciences, Geosciences, and Biosciences Division
  • H2020 European Research Council
Citations
3,821
FWCI
199.39
field-weighted impact
References
462
Percentile
100%
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Citations per year
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