English

Potential energy surface of the 2A' Li2+Li doublet ground state

Chemical Physics 2015-05-13 v1 Atomic and Molecular Clusters

Abstract

The lowest doublet electronic state for the lithium trimer (2A') is calculated for use in three-body scattering calculations using the valence electron FCI method with atomic cores represented using an effective core potential. It is shown that an accurate description of core-valence correlation is necessary for accurate calculations of molecular bond lengths, frequencies and dissociation energies. Interpolation between 2A' ab initio surface data points in a sparse grid is done using the global interpolant moving least squares method with a smooth radial data cutoff function included in the fitting weights and bivariate polynomials as a basis set. The Jahn-Teller splitting of the 2E' surface into the 2A1 and 2B2 states is investigated using a combination of both CASSCF and FCI levels of theory. Additionally, preliminary calculations of the 2A'' surface are also presented using second order spin restricted open-shell Moller-Plesset perturbation theory.

Keywords

Cite

@article{arxiv.0902.0533,
  title  = {Potential energy surface of the 2A' Li2+Li doublet ground state},
  author = {Jason N. Byrd and John A. Montgomery and H. Harvey Michels and Robin Côté},
  journal= {arXiv preprint arXiv:0902.0533},
  year   = {2015}
}

Comments

7 pages, 5 figures

R2 v1 2026-06-21T12:07:33.323Z