Roadmap on electronic structure codes in the exascale era

Gavini, Vikram;Baroni, Stefano;Blum, Volker;Bowler, David R;Perez, D;et.al.
(2023) Modelling and Simulation in Materials Science and Engineering — Vol. 31, n° 6, p. 63301 (2023)

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Authors
  • Gavini, Vikramorcid-logoDepartment of Mechanical Engineering, University of Michigan, Ann Arbor, MI 48109, United States of America
    Author
  • Baroni, Stefanoorcid-logoSISSA-ISAS, Trieste, 34136 Trieste, Italy
    Author
  • Blum, Volkerorcid-logoThomas Lord Department of Mechanical Engineering and Materials Science, Duke University, Durham NC 27708, United States of America
    Author
  • Bowler, David Rorcid-logoLondon Centre for Nanotechnology, London WC1H 0AH, United Kingdom
    Author
  • Author
  • Gonze, Xavierorcid-logoUCLouvain
    Author
  • Perez, Dorcid-logoTheoretical Division T-1, Los Alamos National Laboratory, Los Alamos, NM 87545, United States of America
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Abstract
Electronic structure calculations have been instrumental in providing many important insights into a range of physical and chemical properties of various molecular and solid-state systems. Their importance to various fields, including materials science, chemical sciences, computational chemistry, and device physics, is underscored by the large fraction of available public supercomputing resources devoted to these calculations. As we enter the exascale era, exciting new opportunities to increase simulation numbers, sizes, and accuracies present themselves. In order to realize these promises, the community of electronic structure software developers will however first have to tackle a number of challenges pertaining to the efficient use of new architectures that will rely heavily on massive parallelism and hardware accelerators. This roadmap provides a broad overview of the state-of-the-art in electronic structure calculations and of the various new directions being pursued by the community. It covers 14 electronic structure codes, presenting their current status, their development priorities over the next five years, and their plans towards tackling the challenges and leveraging the opportunities presented by the advent of exascale computing.
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Citations

Gavini, V., Baroni, S., Blum, V., Bowler, D. R., Buccheri, A., Chelikowsky, J. R., Das, S., Dawson, W., Delugas, P., Dogan, M., Draxl, C., Galli, G., Genovese, L., Giannozzi, P., Giantomassi, M., Gonze, X., Govoni, M., Gygi, F., Gulans, A., et al. (2023). Roadmap on electronic structure codes in the exascale era. Modelling and Simulation in Materials Science and Engineering, 31(6), 63301. https://doi.org/10.1088/1361-651x/acdf06 (Original work published 2023)