corner
corner

Phys. Rev. A 73, 012501 (2006) [10 pages]

Triple excitations in the relativistic coupled-cluster formalism and calculation of Na properties

Download: PDF (134 kB) Buy this article Export: BibTeX or EndNote (RIS)

Sergey G. Porsev1,2 and Andrei Derevianko1
1Department of Physics, University of Nevada, Reno, Nevada 89557, USA
2Petersburg Nuclear Physics Institute, Gatchina, Leningrad district 188300, Russia

Received 5 October 2005; published 3 January 2006

A practical high-accuracy relativistic method of atomic structure calculations for univalent atoms is presented. The method is rooted in the coupled-cluster formalism and includes nonperturbative treatment of single and double excitations from the core and single, double, and triple excitations involving valence electron. Triple excitations of core electrons are included in the fourth order of many-body perturbation theory. In addition, contributions from the disconnected excitations are incorporated. Evaluation of matrix elements includes all-order dressing of lines and vertices of the diagrams. The resulting formalism for matrix elements is complete through the fourth order and sums certain chains of diagrams to all orders. With the developed method we compute removal energies, magnetic-dipole hyperfine-structure constants A, and electric-dipole amplitudes. We find that the removal energies are reproduced within 0.01–0.03 % and the hyperfine constants of the 3s1∕2 and 3p1∕2 states with a better than 0.1% accuracy. The computed dipole amplitudes for the principal 3s1∕2-3p1∕2;3∕2 transitions are in an agreement with 0.05%-accurate experimental data.

© 2006 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevA.73.012501
DOI:
10.1103/PhysRevA.73.012501
PACS:
31.15.Dv, 31.30.Jv, 32.10.Fn, 32.10.Hq