Nature of the Darwin term and (Zα)4m3/M2 contribution to the Lamb shift for an arbitrary spin of the nucleus

I. B. Khriplovich, A. I. Milstein, R. A. Sen'kov

Research output

1 Citation (Scopus)

Abstract

The contact Darwin term is demonstrated to be of the same origin as the spin-orbit interaction. The (Zα)4m3/M2 correction to the Lamb shift, generated by the Darwin term, is found for an arbitrary nonvanishing spin of the nucleus, both half-integer and integer. There is also a contribution of the same structure as that of nuclear quadrupole moment.

Original languageEnglish
Pages (from-to)175-184
Number of pages10
JournalSurveys in High Energy Physics
Volume14
Issue number1
DOIs
Publication statusPublished - 1 Jan 1999
Event4th PNPI Winter School on Theoretical Physics - Repino, Russia
Duration: 22 Feb 199828 Feb 1998

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integers
nuclei
shift
spin-orbit interactions
quadrupoles
moments

Scopus subject areas

  • Physics and Astronomy(all)

Cite this

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abstract = "The contact Darwin term is demonstrated to be of the same origin as the spin-orbit interaction. The (Zα)4m3/M2 correction to the Lamb shift, generated by the Darwin term, is found for an arbitrary nonvanishing spin of the nucleus, both half-integer and integer. There is also a contribution of the same structure as that of nuclear quadrupole moment.",
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AU - Milstein, A. I.

AU - Sen'kov, R. A.

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N2 - The contact Darwin term is demonstrated to be of the same origin as the spin-orbit interaction. The (Zα)4m3/M2 correction to the Lamb shift, generated by the Darwin term, is found for an arbitrary nonvanishing spin of the nucleus, both half-integer and integer. There is also a contribution of the same structure as that of nuclear quadrupole moment.

AB - The contact Darwin term is demonstrated to be of the same origin as the spin-orbit interaction. The (Zα)4m3/M2 correction to the Lamb shift, generated by the Darwin term, is found for an arbitrary nonvanishing spin of the nucleus, both half-integer and integer. There is also a contribution of the same structure as that of nuclear quadrupole moment.

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