Phys. Rev. A 60, 996–1004 (1999)Relativistic many-body calculations of electric-dipole transitions between n=2 states in B-like ionsSee Also: Erratum Received 25 February 1999; revised 15 April 1999; published in the issue dated August 1999 Transition rates, oscillator strengths, and line strengths are calculated for the 49 possible electric-dipole transitions between the eight even-parity 2s2p2 states and the seven odd-parity 2s22p and 2p3 states in boronlike ions with nuclear charges ranging from Z=6 to 100. Relativistic many-body perturbation theory (MBPT), including the Breit interaction, is used to evaluate retarded E1 matrix elements in length and velocity forms. The calculations start from a 1s2 Dirac-Fock potential. First-order MBPT is used to obtain intermediate coupling coefficients and second-order MBPT is used to calculate transition matrix elements. Contributions from negative-energy states are included in the second-order E1 matrix elements to ensure gauge independence of transition amplitudes. The transition energies used in the calculation of oscillator strengths and transition rates are from second-order MBPT. Transition rates, line strengths, and oscillator strengths are compared with critically evaluated experimental values and with results from other recent calculations. Lifetimes of the five possible odd-parity upper levels and the five possible even-parity upper levels are given for Z=6–100. Trends of the transition rates as functions of Z are illustrated graphically for selected transitions. © 1999 The American Physical Society URL:
http://link.aps.org/doi/10.1103/PhysRevA.60.996
DOI:
10.1103/PhysRevA.60.996
PACS:
32.70.Cs, 31.25.Eb, 31.25.Jf, 31.30.Jv
See AlsoErratum: U. I. Safronova, W. R. Johnson, and A. E. Livingston, Erratum: Relativistic many-body calculations of electric-dipole transitions between n=2 states in B-like ions [Phys. Rev. A 60, 996 (1999)], Phys. Rev. A 61, 039901 (2000). |
