Relativistic f values for the resonance transitions of Li- and Be-like ions. [Hartree-Fock calculations, dipole oscillator strengths]
Journal Article
·
· Phys. Rev. Lett.; (United States)
- Argonne National Lab., IL
Relativistic Hartree--Fock calculations indicate that the dipole oscillator strengths for the 2s ..-->.. 2p/sub /sup 3///sub 2// and 2s ..-->.. 3p/sub /sup 3///sub 2// transitions of the Li sequence and those for the 2s/sup 2/ /sup 1/S ..-->.. 2s2p/sub /sup 3///sub 2//P/sub 1/ transitions of the Be sequence deviate appreciably for Z greater than 40 from values extrapolated from low-Z ions.
- OSTI ID:
- 7282270
- Journal Information:
- Phys. Rev. Lett.; (United States), Journal Name: Phys. Rev. Lett.; (United States) Vol. 36:3; ISSN PRLTA
- Country of Publication:
- United States
- Language:
- English
Similar Records
Ab initio oscillator strengths and transition probabilities in oxygen-like Cr XVII
WAVE FUNCTIONS AND OSCILLATOR STRENGTHS FOR THE LITHIUM ISOELECTRONIC SEQUENCE
Theoretical studies of atomic transitions. Progress report, March 15, 1983-March 14, 1984
Journal Article
·
Mon Sep 15 00:00:00 EDT 2008
· Atomic Data and Nuclear Data Tables
·
OSTI ID:21159375
WAVE FUNCTIONS AND OSCILLATOR STRENGTHS FOR THE LITHIUM ISOELECTRONIC SEQUENCE
Journal Article
·
Thu Nov 14 23:00:00 EST 1963
· Astrophysical Journal (U.S.)
·
OSTI ID:4114061
Theoretical studies of atomic transitions. Progress report, March 15, 1983-March 14, 1984
Technical Report
·
Sat Dec 31 23:00:00 EST 1983
·
OSTI ID:5541086
Related Subjects
640302* -- Atomic
Molecular & Chemical Physics-- Atomic & Molecular Properties & Theory
74 ATOMIC AND MOLECULAR PHYSICS
ATOMIC IONS
BERYLLIUM IONS
CHARGED PARTICLES
DIPOLES
ENERGY RANGE
ENERGY-LEVEL TRANSITIONS
HARTREE-FOCK METHOD
IONS
LITHIUM IONS
MULTIPOLES
OSCILLATOR STRENGTHS
RELATIVISTIC RANGE
RESONANCE
Molecular & Chemical Physics-- Atomic & Molecular Properties & Theory
74 ATOMIC AND MOLECULAR PHYSICS
ATOMIC IONS
BERYLLIUM IONS
CHARGED PARTICLES
DIPOLES
ENERGY RANGE
ENERGY-LEVEL TRANSITIONS
HARTREE-FOCK METHOD
IONS
LITHIUM IONS
MULTIPOLES
OSCILLATOR STRENGTHS
RELATIVISTIC RANGE
RESONANCE