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Advanced capabilities for materials modelling with Quantum ESPRESSO

  • P. Giannozzi
  • , O. Andreussi
  • , T. Brumme
  • , O. Bunau
  • , M. Buongiorno Nardelli
  • , M. Calandra
  • , R. Car
  • , C. Cavazzoni
  • , D. Ceresoli
  • , M. Cococcioni
  • , N. Colonna
  • , I. Carnimeo
  • , A. Dal Corso
  • , S. De Gironcoli
  • , P. Delugas
  • , R. A. Distasio
  • , A. Ferretti
  • , A. Floris
  • , G. Fratesi
  • , G. Fugallo
  • R. Gebauer, U. Gerstmann, F. Giustino, T. Gorni, J. Jia, M. Kawamura, H. Y. Ko, A. Kokalj, E. Kücükbenli, M. Lazzeri, M. Marsili, N. Marzari, F. Mauri, N. L. Nguyen, H. V. Nguyen, A. Otero-De-La-Roza, L. Paulatto, S. Poncé, D. Rocca, R. Sabatini, B. Santra, M. Schlipf, A. P. Seitsonen, A. Smogunov, I. Timrov, T. Thonhauser, P. Umari, N. Vast, X. Wu, S. Baroni
  • and Physics University of Udine
  • University of Lugano
  • ENAC-IIC-GEL
  • University of Leipzig
  • Université Pierre et Marie Curie
  • University of North Texas
  • Princeton University
  • CINECA
  • National Research Council (CNR)
  • International School of Advanced Studies
  • International School for Advanced Studies (SISSA/ISAS)
  • Cornell University
  • Ev-K2-CNR Committee
  • University of Lincoln
  • University of Milano
  • Laboratoire des Solides Irradiés
  • Abdus Salam International Centre for Theoretical Physics
  • University Paderborn
  • University of Oxford
  • University of Tokyo
  • Department of Biochemistry and Molecular and Structural Biology
  • University of Padova
  • Dipartimento di Fisica
  • Vietnam Academy of Science and Technology (VAST)
  • University of British Columbia Okanagan
  • Nancy Université
  • Faculté des Sciences
  • Orionis Biosciences
  • University of Zurich
  • PSL research University & IPSL
  • Université Paris-Saclay
  • Wake Forest University
  • CEA/UVSQ/CNRS
  • Temple University

Research output: Contribution to journalArticlepeer-review

8641 Citations (Scopus)

Abstract

Quantum ESPRESSO is an integrated suite of open-source computer codes for quantum simulations of materials using state-of-the-art electronic-structure techniques, based on density-functional theory, density-functional perturbation theory, and many-body perturbation theory, within the plane-wave pseudopotential and projector-augmented-wave approaches. Quantum ESPRESSO owes its popularity to the wide variety of properties and processes it allows to simulate, to its performance on an increasingly broad array of hardware architectures, and to a community of researchers that rely on its capabilities as a core open-source development platform to implement their ideas. In this paper we describe recent extensions and improvements, covering new methodologies and property calculators, improved parallelization, code modularization, and extended interoperability both within the distribution and with external software.

Original languageEnglish
Article number465901
JournalJournal of Physics: Condensed Matter
Volume29
Issue number46
DOIs
Publication statusPublished - 24 Oct 2017
Externally publishedYes

Keywords

  • density-functional perturbation theory
  • density-functional theory
  • frst-principles simulations
  • many-body perturbation theory

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