2001
DOI: 10.1103/physreva.63.062502
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Nuclear polarization in hydrogenlike heavy ions

Abstract: The nuclear polarization ͑NP͒ correction is calculated for the ground states of the hydrogenlike 82 208 Pb and 92 238 U ions. We take into account the transverse interaction, ignored in the previous studies, as well as the Coulomb interaction. The NP correction is formulated in the bound-state QED formalism with the ladder and cross diagrams of two-photon exchange between an electron and a nucleus. We take into account nuclear excitations of low-lying states and giant resonances with multipolarities of ϭ0 ϩ , … Show more

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Cited by 12 publications
(22 citation statements)
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“…For quantitative comparison, we have calculated the muonic NP correction for 16 O in the collective model [21,28], in which the excitation modes are assumed to be concentrated in a single resonant state for each spin and isospin with excitation energies given by …”
Section: Resultsmentioning
confidence: 99%
See 1 more Smart Citation
“…For quantitative comparison, we have calculated the muonic NP correction for 16 O in the collective model [21,28], in which the excitation modes are assumed to be concentrated in a single resonant state for each spin and isospin with excitation energies given by …”
Section: Resultsmentioning
confidence: 99%
“…It is extremely important to carry out a similar analysis for electronic NP correction in heavy atoms, where it is expected that the effect of antinucleon states is more remarkable in order to obtain the gauge-invariant result [3,28]. The investigation of the antinucleon contribution to the NP corrections in electronic ground and excited states as well as muonic states may provide an evidence of the strong attractive selfenergy of antinucleon in the nucleus.…”
Section: Resultsmentioning
confidence: 99%
“…By averaging the results measured at four target pressures, a value ν − HF − ν + HF = 27.825(33) MHz was obtained [18,247]. By comparing this with the results of three-body QED calculations [248,249,250,251,252], the magnetic moment was obtained as µ p = −2.7862(83)µ nucl . This determination with a precision of 0.3% is in good agreement with the value measured by X-ray spectroscopy of pPb atoms to a similar precision.…”
Section: Laser-microwave-laser Triple Resonance Spectroscopymentioning
confidence: 91%
“…The HF splitting ( Fig. 1) of pHe + has been calculated by Korobov and Bakalov [14][15][16][17] to the α 4 order. The dominant HF splitting is caused by the interaction of the antiproton orbital angular momentum L with the electron spin Se (p -e − spin-orbit splitting).…”
Section: Antiprotonic Helium Hyperfine Structurementioning
confidence: 99%