Project For Advancement of Software Usability in Materials Science

Fuente: arXiv
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Autori principali: Yoshimi, Kazuyoshi, Motoyama, Yuichi, Aoyama, Tatsumi, Kawamura, Mitsuaki, Kawashima, Naoki
Natura: Preprint
Pubblicazione: 2025
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author Yoshimi, Kazuyoshi
Motoyama, Yuichi
Aoyama, Tatsumi
Kawamura, Mitsuaki
Kawashima, Naoki
author_facet Yoshimi, Kazuyoshi
Motoyama, Yuichi
Aoyama, Tatsumi
Kawamura, Mitsuaki
Kawashima, Naoki
contents The Institute for Solid State Physics (ISSP) at The University of Tokyo has been carrying out a software development project named ``the Project for Advancement of Software Usability in Materials Science (PASUMS)". Since the launch of PASUMS, various open-source software programs have been developed/advanced, including ab initio calculations, effective model solvers, and software for machine learning. We also focus on activities that make the software easier to use, such as developing comprehensive computing tools that enable efficient use of supercomputers and interoperability between different software programs. We hope to contribute broadly to developing the computational materials science community through these activities.
format Preprint
id arxiv_https___arxiv_org_abs_2505_18390
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Project For Advancement of Software Usability in Materials Science
Yoshimi, Kazuyoshi
Motoyama, Yuichi
Aoyama, Tatsumi
Kawamura, Mitsuaki
Kawashima, Naoki
Software Engineering
Materials Science
Computational Physics
Physics Education
The Institute for Solid State Physics (ISSP) at The University of Tokyo has been carrying out a software development project named ``the Project for Advancement of Software Usability in Materials Science (PASUMS)". Since the launch of PASUMS, various open-source software programs have been developed/advanced, including ab initio calculations, effective model solvers, and software for machine learning. We also focus on activities that make the software easier to use, such as developing comprehensive computing tools that enable efficient use of supercomputers and interoperability between different software programs. We hope to contribute broadly to developing the computational materials science community through these activities.
title Project For Advancement of Software Usability in Materials Science
topic Software Engineering
Materials Science
Computational Physics
Physics Education
url https://arxiv.org/abs/2505.18390