Loading [MathJax]/extensions/MathMenu.js
Developing a Computational Chemistry Framework for the Exascale Era | IEEE Journals & Magazine | IEEE Xplore

Developing a Computational Chemistry Framework for the Exascale Era


Abstract:

Within computational chemistry, the NWChem package has arguably been the de facto standard for running high-accuracy numerical simulations on the most powerful supercompu...Show More

Abstract:

Within computational chemistry, the NWChem package has arguably been the de facto standard for running high-accuracy numerical simulations on the most powerful supercomputers. In order to better address the challenges presented by emerging exascale architectures, the decision has been made to rewrite NWChem. Design of the resulting package, NWChemEx, has been driven by exascale computing; however, significant additional design considerations have arisen from the team's involvement with the Molecular Sciences Software Institute (MolSSI). MolSSI is a National Science Foundation initiative focused on establishing coding and data standards for the computational chemistry community. As a result, NWChemEx is built upon a general computational chemistry framework called the simulation development environment (SDE) that is designed with a focus on extensibility and interoperability. The present manuscript describes the modular approach of the SDE and how it has been used to implement the self-consistent field algorithm within NWChemEx.
Published in: Computing in Science & Engineering ( Volume: 21, Issue: 2, 01 March-April 2019)
Page(s): 48 - 58
Date of Publication: 06 December 2018

ISSN Information:

Funding Agency:


Contact IEEE to Subscribe

References

References is not available for this document.