2021 Annual Meeting
(543e) Elucidating Chemical Evolution in Shocked Materials
Author
Atomistic simulations can be a powerful tool for shock experiment interpretation by providing an atomistically-resolved view into OMM evolution. However, characteristic problem scales approaching a μm and μs preclude use of highly predictive first principles-based simulation approaches (e.g., Kohn-Sham density functional theory), and existing molecular mechanics-based interatomic models are generally not designed for such high temperature and pressure conditions. Recently, the ChIMES machine-learned reactive interatomic model and development framework was developed to overcome these challenges. In this presentation, first-of-their-kind simulations using these models will be presented, and implications for our understanding OMMs evolution under extreme conditions are discussed.
This work is performed under the auspices of the U.S. Department of Energy by Lawrence Livermore National Laboratory under Contract DE-AC52-07NA27344.