Neural functional theory for inhomogeneous fluids: Fundamentals and applications

Author:

Sammüller Florian1ORCID,Hermann Sophie1ORCID,de las Heras Daniel1ORCID,Schmidt Matthias1ORCID

Affiliation:

1. Theoretische Physik II, Physikalisches Institut, Universität Bayreuth, Bayreuth D-95447, Germany

Abstract

We present a hybrid scheme based on classical density functional theory and machine learning for determining the equilibrium structure and thermodynamics of inhomogeneous fluids. The exact functional map from the density profile to the one-body direct correlation function is represented locally by a deep neural network. We substantiate the general framework for the hard sphere fluid and use grand canonical Monte Carlo simulation data of systems in randomized external environments during training and as reference. Functional calculus is implemented on the basis of the neural network to access higher-order correlation functions via automatic differentiation and the free energy via functional line integration. Thermal Noether sum rules are validated explicitly. We demonstrate the use of the neural functional in the self-consistent calculation of density profiles. The results outperform those from state-of-the-art fundamental measure density functional theory. The low cost of solving an associated Euler–Lagrange equation allows to bridge the gap from the system size of the original training data to macroscopic predictions upon maintaining near-simulation microscopic precision. These results establish the machine learning of functionals as an effective tool in the multiscale description of soft matter.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Machine Learning of a Density Functional for Anisotropic Patchy Particles;Journal of Chemical Theory and Computation;2024-01-17

2. Neural functional theory for inhomogeneous fluids: Fundamentals and applications;Proceedings of the National Academy of Sciences;2023-12-07

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