Authors
Kejie Shao, Jun Chen, Zhiqiang Zhao, Dong H Zhang
Publication date
2016/8/21
Journal
The Journal of Chemical Physics
Volume
145
Issue
7
Publisher
AIP Publishing
Description
A more flexible neural network (NN) method using the fundamental invariants (FIs) as the input vector is proposed in the construction of potential energy surfaces for molecular systems involving identical atoms. Mathematically, FIs finitely generate the permutation invariant polynomial (PIP) ring. In combination with NN, fundamental invariant neural network (FI-NN) can approximate any function to arbitrary accuracy. Because FI-NN minimizes the size of input permutation invariant polynomials, it can efficiently reduce the evaluation time of potential energy, in particular for polyatomic systems. In this work, we provide the FIs for all possible molecular systems up to five atoms. Potential energy surfaces for OH 3 and CH 4 were constructed with FI-NN, with the accuracy confirmed by full-dimensional quantum dynamic scattering and bound state calculations.
Potential energy surfaces (PESs) play an important role in the …
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