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An adaptive interpolation scheme for molecular potential energy surfaces
Journal article   Open access   Peer reviewed

An adaptive interpolation scheme for molecular potential energy surfaces

Markus Kowalewski, Elisabeth Larsson and Alfa Heryudono
The Journal of chemical physics, Vol.145(8), p.084104
08/28/2016
PMID: 27586901

Abstract

Chemistry Chemistry, Physical Physical Sciences Physics Physics, Atomic, Molecular & Chemical Science & Technology
The calculation of potential energy surfaces for quantum dynamics can be a time consuming task-especially when a high level of theory for the electronic structure calculation is required. We propose an adaptive interpolation algorithm based on polyharmonic splines combined with a partition of unity approach. The adaptive node refinement allows to greatly reduce the number of sample points by employing a local error estimate. The algorithm and its scaling behavior are evaluated for a model function in 2, 3, and 4 dimensions. The developed algorithm allows for a more rapid and reliable interpolation of a potential energy surface within a given accuracy compared to the non-adaptive version. Published by AIP Publishing.

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