Transition probabilities for 5s-5p, 5p-5d, 4f-5d, and 5d-5f transitions in Ag-like ions with Z = 50-86
Journal Article
·
· Atomic Data and Nuclear Data Tables
The wavelengths, electric dipole transition probabilities, and oscillator strengths are calculated for transitions between low-lying states (5s-5p, 5p-5d, 4f-5d, and 5d-5f) in the silver isoelectronic sequence (50 {<=} Z {<=} 86) using relativistic perturbation theory with a zero-approximation model potential. The results are compared with the corresponding data of the relativistic Hartree-Fock theory and the relativistic many-body perturbation theory. The results of these three theoretical approaches are compared with available experimental data for the level lifetimes. Possible reasons for some disagreements are discussed.
- OSTI ID:
- 21499649
- Journal Information:
- Atomic Data and Nuclear Data Tables, Journal Name: Atomic Data and Nuclear Data Tables Journal Issue: 1 Vol. 97; ISSN ADNDAT; ISSN 0092-640X
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
73 NUCLEAR PHYSICS AND RADIATION PHYSICS
APPROXIMATIONS
CALCULATION METHODS
CHARGED PARTICLES
DATA
E1-TRANSITIONS
ENERGY RANGE
ENERGY-LEVEL TRANSITIONS
EXPERIMENTAL DATA
HARTREE-FOCK METHOD
INFORMATION
IONS
LIFETIME
MANY-BODY PROBLEM
MULTIPOLE TRANSITIONS
NUMERICAL DATA
OSCILLATOR STRENGTHS
PERTURBATION THEORY
PROBABILITY
RELATIVISTIC RANGE
SILVER IONS
APPROXIMATIONS
CALCULATION METHODS
CHARGED PARTICLES
DATA
E1-TRANSITIONS
ENERGY RANGE
ENERGY-LEVEL TRANSITIONS
EXPERIMENTAL DATA
HARTREE-FOCK METHOD
INFORMATION
IONS
LIFETIME
MANY-BODY PROBLEM
MULTIPOLE TRANSITIONS
NUMERICAL DATA
OSCILLATOR STRENGTHS
PERTURBATION THEORY
PROBABILITY
RELATIVISTIC RANGE
SILVER IONS