Nuclear structure corrections in the energy spectra of electronic and muonic deuterium
arXiv:hep-ph/0211445 · doi:10.1103/PhysRevA.67.052506
Abstract
The one-loop nuclear structure corrections of order (Z alpha)^5 to the Lamb shift and hyperfine splitting of the deuterium are calculated. The contribution of the deuteron structure effects to the isotope shift (ep)-(ed), (mu p)-(mu d) in the interval (1S - 2S) is obtained on the basis of modern experimental data on the deuteron electromagnetic form factors. The comparison with the similar contributions to the Lamb shift for electronic and muonic hydrogen shows, that the relative contribution due to the nucleus structure increases when passing from the hydrogen to the deuterium.
Talk presented at the Conference "Physics of Fundamental Interactions" of the Nuclear Physics Section of the Physics Department of RAS, ITEP, Moscow, 2-6 December, 2002; 8 pages, REVTEX
References in corpus (2)
Cited by in corpus (15)
- Lamb Shift in Muonic Hydrogen. I. Verification and Update of Theoretical Predictions
- 2S Hyperfine splitting of muonic hydrogen
- Theory of the n=2 levels in muonic deuterium
- Lamb Shift in Muonic Hydrogen. II. Analysis of the Discrepancy of Theory and Experiment
- Muonic hydrogen ground state hyperfine splitting
- Lamb shift in muonic deuterium atom
- Hyperfine structure of S-states in muonic deuterium
- Radiative nonrecoil nuclear finite size corrections of order to the hyperfine splitting of S-states in muonic hydrogen
- Theory of muonic hydrogen - muonic deuterium isotope shift
- Hyperfine structure of P-states in muonic deuterium
- Fine and hyperfine structure of the muonic ^3He ion
- Radiative nonrecoil nuclear finite size corrections of order to the Lamb shift in light muonic atoms
- Hyperfine structure of the ground state muonic He-3 atom
- Ground state hyperfine structure of light muon-electron ions
- Ground state hyperfine structure in muonic lithium ions