English

Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials

Materials Science 2009-09-02 v2

Abstract

Quantum ESPRESSO is an integrated suite of computer codes for electronic-structure calculations and materials modeling, based on density-functional theory, plane waves, and pseudopotentials (norm-conserving, ultrasoft, and projector-augmented wave). Quantum ESPRESSO stands for "opEn Source Package for Research in Electronic Structure, Simulation, and Optimization". It is freely available to researchers around the world under the terms of the GNU General Public License. Quantum ESPRESSO builds upon newly-restructured electronic-structure codes that have been developed and tested by some of the original authors of novel electronic-structure algorithms and applied in the last twenty years by some of the leading materials modeling groups worldwide. Innovation and efficiency are still its main focus, with special attention paid to massively-parallel architectures, and a great effort being devoted to user friendliness. Quantum ESPRESSO is evolving towards a distribution of independent and inter-operable codes in the spirit of an open-source project, where researchers active in the field of electronic-structure calculations are encouraged to participate in the project by contributing their own codes or by implementing their own ideas into existing codes.

Keywords

Cite

@article{arxiv.0906.2569,
  title  = {Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials},
  author = {P. Giannozzi and S. Baroni and N. Bonini and M. Calandra and R. Car and C. Cavazzoni and D. Ceresoli and G. L. Chiarotti and m. Cococcioni and I. Dabo and A. Dal Corso and S. Fabris and G. Fratesi and S. de Gironcoli and R. Gebauer and U. Gerstmann and C. Gougoussis and A. Kokalj and M. Lazzeri and L. Martin-Samos and N. Marzari and F. Mauri and R. Mazzarello and S. Paolini and A. Pasquarello and L. Paulatto and C. Sbraccia and S. Scandolo and G. Sclauzero and A. P. Seitsonen and A. Smogunov and P. Umari and R. M. Wentzcovitch},
  journal= {arXiv preprint arXiv:0906.2569},
  year   = {2009}
}

Comments

36 pages, 5 figures, resubmitted to J.Phys.: Condens. Matter

R2 v1 2026-06-21T13:13:18.069Z