Summary
The theory of hyperfine-structure splitting in highly charged ions is reviewed. The available theoretical results for the ground-state hyperfine splitting in hydrogen-like and lithium-like ions are presented. It is shown that the Bohr Weisskopf effect, which mainly defines the uncertainty of the theoretical values, can be eliminated in a combination of the hyperfine splitting values of hydrogenlike and lithium-like ions. It allows one to make high precision predictions for the ground-state hyperfine splitting in lithium-like ions if the ground-state hyperfine splitting of the corresponding hydrogen-like ions is known from experiment. The transition probabilities between the hyperfine components are also presented.
Keywords
- Hyperfine Splitting
- Nuclear Magnetic Moment
- Nuclear Charge Radius
- Single Particle Model
- Nuclear Charge Distribution
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.
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Shabaev, V.M. (1999). Hyperfine Structure of Highly Charged Ions. In: Beyer, H.F., Shevelko, V.P. (eds) Atomic Physics with Heavy Ions. Springer Series on Atoms+Plasmas, vol 26. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-642-58580-7_6
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