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Potential energy surface interpolation with neural networks for instanton rate calculations

Authors :
Cooper, April M.
Hallmen, Philipp P.
Kästner, Johannes
Source :
THE JOURNAL OF CHEMICAL PHYSICS 148, 094106 (2018)
Publication Year :
2020

Abstract

Artificial neural networks are used to fit a potential energy surface. We demonstrate the benefits of using not only energies, but also their first and second derivatives as training data for the neural network. This ensures smooth and accurate Hessian surfaces, which are required for rate constant calculations using instanton theory. Our aim was a local, accurate fit rather than a global PES, because instanton theory requires information on the potential only in the close vicinity of the main tunneling path. Elongations along vibrational normal modes at the transition state are used as coordinates for the neural network. The method is applied to the hydrogen abstraction reaction from methanol, calculated on a coupled-cluster level of theory. The reaction is essential in astrochemistry to explain the deuteration of methanol in the interstellar medium.

Subjects

Subjects :
Physics - Chemical Physics

Details

Database :
arXiv
Journal :
THE JOURNAL OF CHEMICAL PHYSICS 148, 094106 (2018)
Publication Type :
Report
Accession number :
edsarx.2009.04282
Document Type :
Working Paper
Full Text :
https://doi.org/10.1063/1.5015950