English

Estimates of Effective Hubbard Model Parameters for C20 isomers

Strongly Correlated Electrons 2008-08-29 v2

Abstract

We report on an effective Hubbard Hamiltonian approach for the study of electronic correlations in C20_{20} isomers, cage, bowl and ring, with quantum Monte Carlo and exact diagonalization methods. The tight-binding hopping parameter, tt, in the effective Hamiltonian is determined by a fit to density functional theory calculations, and the on-site Coulomb interaction, U/tU/t, is determined by calculating the isomers' affinity energies, which are compared to experimental values. For the C20_{20} fullerene cage we estimate tcage0.681.36t_{\rm cage}\simeq 0.68-1.36 eV and (U/t)cage7.112.2(U/t)_{\rm cage} \simeq 7.1-12.2. The resulting effective Hamiltonian is then used to study the shift of spectral peaks in the density of states of neutral and one-electron-doped C20_{20} isomers. Energy gaps are also extracted for possible future comparison with experiments.

Keywords

Cite

@article{arxiv.0804.3785,
  title  = {Estimates of Effective Hubbard Model Parameters for C20 isomers},
  author = {Fei Lin and Erik S. Sørensen},
  journal= {arXiv preprint arXiv:0804.3785},
  year   = {2008}
}

Comments

6 pages, 5 figures

R2 v1 2026-06-21T10:34:01.736Z