Study of correlations from Ab-Initio Simulations of Liquid Water

POSTER

Abstract

An accurate understanding of the dynamics and the structure of H2O molecules in the liquid phase is of extreme importance both from a fundamental and from a practical standpoint. Despite the successes of Molecular Dynamics (MD) with Density Functional Theory (DFT), liquid water remains an extremely difficult material to simulate accurately and efficiently because of fine balance between the covalent O-H bond, the hydrogen bond and the attractive the van der Waals forces. Small errors in those produce dramatic changes in the macroscopic properties of the liquid or in its structural properties. Different density functionals produce answers that differ by as much as 35\% in ambient conditions, with none producing quantitative results in agreement with experiment at different mass densities [J. Chem Phys. 139, 194502(2013)]. In order to understand these differences we perform an exhaustive scanning of the geometrical coordinates of MD simulations and study their statistical correlations with the simulation output quantities using advanced correlation analyses and machine learning techniques.

Authors

  • Adrian Soto

    Stony Brook University

  • Marivi Fernandez-Serra

    Stony Brook University, State Univ of NY- Stony Brook, SUNY-Stony Brook, Stony Brook University, USA

  • Deyu Lu

    Brookhaven National Laboratory, Brookhaven National Lab

  • Shinjae Yoo

    Brookhaven National Lab