Electric dipole polarizabilities of alkali metal ions from perturbed relativistic coupled-cluster theory
arXiv:1212.5910 · doi:10.1103/PhysRevA.87.042520
Abstract
We use the perturbed relativistic coupled-cluster theory to compute the static electric dipole polarizabilities of the singly ionized alkali atoms, namely, Na, , Rb, Cs and Fr. The computations use the Dirac-Coulomb-Breit Hamiltonian with the no-virual-pair approximation and we also estimate the correction to the static electric dipole polarizability arising from the Breit interaction.
8 pages, 3 figures and 9 tables. arXiv admin note: text overlap with arXiv:1210.5471
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Cited by in corpus (7)
- Correlation trends in the ground state static electric dipole polarizabilities of closed-shell atoms and ions
- Electric dipole polarizability of alkaline-Earth-metal atoms from perturbed relativistic coupled-cluster theory with triples
- Triple excitations in perturbed relativistic coupled-cluster theory and Electric dipole polarizability of groupIIB elements
- RCC calculation of electric dipole polarizability and correlation energy of Cn, Nh and Og: Correlation effects from lighter to superheavy elements
- Electric dipole polarizability of group-IIIA ions using PRCC: Large correlation effects from nonlinear terms
- Electric dipole polarizabilities of doubly ionized alkaline Earth metal ions from perturbed relativistic coupled-cluster theory
- RCCPAC: A parallel relativistic coupled-cluster program for closed-shell and one-valence atoms and ions in FORTRAN