Mass- and field-shift isotope parameters for the 2s-2p resonance doublet of lithiumlike ions

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Abstract

It was recently shown that dielectronic recombination measurements can be used for accurately inferring changes in the nuclear mean-square charge radii of highly charged lithiumlike neodymium. To make use of this method to derive information about the nuclear charge distribution for other elements and isotopes, accurate electronic isotope shift parameters are required. In this work, we calculate and discuss the relativistic mass- and field-shift factors for the two 2s2S 1/2-2p2P1/2,3/2o transitions along the lithium isoelectronic sequence. Based on the multiconfiguration Dirac-Hartree-Fock method, the electron correlation and the Breit interaction are taken into account systematically. The analysis of the isotope shifts for these two transitions along the isoelectronic sequence demonstrates the importance and competition between the mass shifts and the field shifts. © 2012 American Physical Society.

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Li, J., Nazé, C., Godefroid, M., Fritzsche, S., Gaigalas, G., Indelicato, P., & Jönsson, P. (2012). Mass- and field-shift isotope parameters for the 2s-2p resonance doublet of lithiumlike ions. Physical Review A - Atomic, Molecular, and Optical Physics, 86(2). https://doi.org/10.1103/PhysRevA.86.022518

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