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Transition Probabilities for Hydrogen-Like Atoms

by: Oliverio Jitrik, Carlos F. Bunge
Journal of Physical and Chemical Reference Data, Vol. 33, No. 4. (2004), pp. 1059-1070, doi:10.1063/1.1796671  Key: citeulike:11915123

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Abstract

E1, M1, E2, M2, E3, and M3 transition probabilities for hydrogen-like atoms are calculated with point-nucleus Dirac eigenfunctions for Z = 1–118 and up to large quantum numbers l = 25 and n = 26, increasing existing data more than a thousandfold. A critical evaluation of the accuracy shows a higher reliability with respect to previous works. Tables for hydrogen containing a subset of the results are given explicitly, listing the states involved in each transition, wavelength, term energies, statistical weights, transition probabilities, oscillator strengths, and line strengths. The complete results, including 1 863 574 distinct transition probabilities, lifetimes, and branching fractions are available at http://www.fisica.unam.mx/research/tables/spectra/1el © 2005 American Institute of Physics.


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