Spin-orbit effects in electric field gradients of alkali metal atoms

Citation
M. Pernpointner et P. Schwerdtfeger, Spin-orbit effects in electric field gradients of alkali metal atoms, J PHYS B, 34(4), 2001, pp. 659-670
Citations number
46
Categorie Soggetti
Physics
Journal title
JOURNAL OF PHYSICS B-ATOMIC MOLECULAR AND OPTICAL PHYSICS
ISSN journal
09534075 → ACNP
Volume
34
Issue
4
Year of publication
2001
Pages
659 - 670
Database
ISI
SICI code
0953-4075(20010228)34:4<659:SEIEFG>2.0.ZU;2-5
Abstract
Spin-orbit effects in electric field gradients (EFG) of alkali atoms in the P-2(3/2) state are investigated by comparison of correlated (CCSD(T)) four -component Dirac-Fock results with scalar relativistic Douglas-Kroll calcul ations. Since the Douglas-Kroll method is based on a unitary transformation of the full four-component Dirac Hamiltonian to a two-component form the u se of the untransformed EFG operator leads to the well known picture change error. We therefore use the point charge nuclear quadrupole moment method in combination with the Douglas-Kroll transformation which removes picture- change effects since only Coulomb-type operators are to be transformed. We find that spin-orbit effects partially compensate scalar relativistic effec ts and are only important for the heavier elements Rb and Cs. A comparison to EFGs derived from valence-only (r(-3)) values shows that Sternheimer cor rections are roughly proportional to the dipole polarizability of the posit ively charged atom and can become very large for the heaviest atom studied, Cs, amounting to 46% of the total EFG.