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Using collective variables to drive molecular dynamics simulations

Molecular Physics · 2013 · Vol. 111(22-23) · pp. 3345–3362
Giacomo FiorinMichael L. KleinJérôme Hénin

Abstract

A software framework is introduced that facilitates the application of biasing algorithms to collective variables of the type commonly employed to drive massively parallel molecular dynamics (MD) simulations. The modular framework that is presented enables one to combine existing collective variables into new ones, and combine any chosen collective variable with available biasing methods. The latter include the classic time-dependent biases referred to as steered MD and targeted MD, the temperature-accelerated MD algorithm, as well as the adaptive free-energy biases called metadynamics and adaptive biasing force. The present modular software is extensible, and portable between commonly used MD simulation engines.

Spectroscopy and Quantum Chemical StudiesTheoretical and Computational PhysicsAdvanced Chemical Physics StudiesMetadynamicsBiasingModular designComputer scienceMolecular dynamicsVariable (mathematics)SoftwareStatistical physicsPhysicsChemistry

Funding

  • National Science Foundation
  • Grand Équipement National De Calcul Intensif
  • Division of Chemistry
Citations
1,063
FWCI
18.29
field-weighted impact
References
74
Percentile
100%
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Citations per year
References
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