English

Chaos and localization in the wavefunctions of complex atoms NdI, PmI and SmI

Atomic Physics 2009-12-29 v2 General Physics

Abstract

Wavefunctions of complex lanthanide atoms NdI, PmI and SmI, obtained via multi-configuration Dirac-Fock method, are analyzed for density of states in terms of partial densities, strength functions (Fk(E)F_k(E)), number of principal components (ξ2(E)\xi_2(E)) and occupancies (\lannα\ranE\lan n_\alpha \ran^E) of single particle orbits using embedded Gaussian orthogonal ensemble of one plus two-body random matrix ensembles [EGOE(1+2)]. It is seen that density of states are in general multi-modal, Fk(E)F_k(E)'s exhibit variations as function of the basis states energy and ξ2(E)\xi_2(E)'s show structures arising from localized states. The sources of these departures from EGOE(1+2) are investigated by examining the partial densities, correlations between Fk(E)F_k(E), ξ2(E)\xi_2(E) and \lannα\ranE\lan n_\alpha \ran^E and also by studying the structure of the Hamiltonian matrices. These studies point out the operation of EGOE(1+2) but at the same time suggest that weak admixing between well separated configurations should be incorporated into EGOE(1+2) for more quantitative description of chaos and localization in NdI, PmI and SmI.

Keywords

Cite

@article{arxiv.physics/0412021,
  title  = {Chaos and localization in the wavefunctions of complex atoms NdI, PmI and SmI},
  author = {Dilip Angom and V. K. B. Kota},
  journal= {arXiv preprint arXiv:physics/0412021},
  year   = {2009}
}

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