Interrelation between $\bar{p}$-Ca Atom Spectra and Nuclear Density Profiles
This work studies $\bar{p}$-Ca atom spectra in light of the strong shifts and level widths, using the optical model with several types of parametric coefficients. The spectroscopic quantities are obtained as the eigenvalues of the Dirac equation, where the nuclear densities computed via nuclear Dens...
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Main Authors | , , , , |
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Format | Journal Article |
Language | English |
Published |
26.08.2024
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Subjects | |
Online Access | Get full text |
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Summary: | This work studies $\bar{p}$-Ca atom spectra in light of the strong shifts and
level widths, using the optical model with several types of parametric
coefficients. The spectroscopic quantities are obtained as the eigenvalues of
the Dirac equation, where the nuclear densities computed via nuclear Density
Functional Theory and the effect of the anomalous magnetic moment are
incorporated. The results indicate that the isovector term's contribution to
the optical potential is crucial for explaining the systematical differences in
the strong shifts between $^{40}$Ca and $^{48}$Ca. Furthermore, it is found
that both the strong shifts and the level widths exhibit significant dependence
on the nuclear density profiles. These findings provide critical insights into
the nuclear structures, particularly in the context of Calcium isotopes, by
offering a more comprehensive understanding of the underlying nuclear-hadron
properties. |
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DOI: | 10.48550/arxiv.2408.14760 |