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Benchmarking Descriptors, Models, and Systems for Many-Body Machine Learned Force Fields in Molten Transition Metals

ORAL

Abstract

The development of accurate and efficient molecular dynamics force fields are a crucial step in an overall materials discovery workflow that complements experiments with theoretical simulations. In order to facilitate the ongoing development of automated machine-learned force fields using tools like FLARE++ and Nequip, we have generated a benchmarking dataset of molten single-element bulk structures with a vacancy defect in order to study the interplay between many body behavior and model performance. This dataset contains ab initio molecular dynamics simulations capturing high-temperature crystalline and melted phases. We attempt to explain the difference in model performance across implementation, levels of descriptor fidelity, and individual systems based on differences in elemental properties, and using interpretable machine learning models, reveal the interplay between elemental properties and many-body character revealed by these differences in performance.

Presenters

  • Cameron J Owen

    Harvard University

Authors

  • Cameron J Owen

    Harvard University

  • Steven B Torrisi

    Harvard University, Toyota Research Institute, Harvard University

  • Isabel Diersen

    Harvard University

  • Lixin Sun

    Harvard University

  • Jin Soo Lim

    Harvard University

  • Yu Xie

    Harvard University

  • Jonathan P Vandermause

    Harvard University

  • Boris Kozinsky

    Harvard University