Enhanced Sampling with Machine Learning

Author:

Mehdi Shams12,Smith Zachary12,Herron Lukas12,Zou Ziyue3,Tiwary Pratyush13

Affiliation:

1. 1Institute for Physical Science and Technology, University of Maryland, College Park, Maryland, USA; email: ptiwary@umd.edu

2. 2Biophysics Program, University of Maryland, College Park, Maryland, USA

3. 3Department of Chemistry and Biochemistry, University of Maryland, College Park, Maryland, USA

Abstract

Molecular dynamics (MD) enables the study of physical systems with excellent spatiotemporal resolution but suffers from severe timescale limitations. To address this, enhanced sampling methods have been developed to improve the exploration of configurational space. However, implementing these methods is challenging and requires domain expertise. In recent years, integration of machine learning (ML) techniques into different domains has shown promise, prompting their adoption in enhanced sampling as well. Although ML is often employed in various fields primarily due to its data-driven nature, its integration with enhanced sampling is more natural with many common underlying synergies. This review explores the merging of ML and enhanced MD by presenting different shared viewpoints. It offers a comprehensive overview of this rapidly evolving field, which can be difficult to stay updated on. We highlight successful strategies such as dimensionality reduction, reinforcement learning, and flow-based methods. Finally, we discuss open problems at the exciting ML-enhanced MD interface.

Publisher

Annual Reviews

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