Hadronic vacuum polarization effect in muonic atoms

Fuente: arXiv
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Main Authors: Mandrykina, Zoia A., Thierfeld, Moritz, Oreshkina, Natalia S.
Format: Preprint
Published: 2025
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author Mandrykina, Zoia A.
Thierfeld, Moritz
Oreshkina, Natalia S.
author_facet Mandrykina, Zoia A.
Thierfeld, Moritz
Oreshkina, Natalia S.
contents The hadronic vacuum polarization (HVP) corrections to energy levels in muonic atoms are studied systematically across the periodic table. Two nuclear charge distribution models have been considered, with partly analytical solution for an homogeneously charged sphere model and direct numerical integration for a Fermi nuclear charge distribution. Our comparison reveals a good agreement between both approaches with differences typically below a few percent. The magnitude of HVP corrections increases with nuclear charge, displaying irregularities that correlate directly with the non-monotonic behavior of nuclear radii. Despite strong relativistic effects at high $Z$, the ratio of hadronic to muonic vacuum polarization remains remarkably stable, deviating by less than $10\%$ from the established $67\%$ non-relativistic benchmark value
format Preprint
id arxiv_https___arxiv_org_abs_2509_01311
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Hadronic vacuum polarization effect in muonic atoms
Mandrykina, Zoia A.
Thierfeld, Moritz
Oreshkina, Natalia S.
Atomic Physics
Nuclear Theory
Quantum Physics
The hadronic vacuum polarization (HVP) corrections to energy levels in muonic atoms are studied systematically across the periodic table. Two nuclear charge distribution models have been considered, with partly analytical solution for an homogeneously charged sphere model and direct numerical integration for a Fermi nuclear charge distribution. Our comparison reveals a good agreement between both approaches with differences typically below a few percent. The magnitude of HVP corrections increases with nuclear charge, displaying irregularities that correlate directly with the non-monotonic behavior of nuclear radii. Despite strong relativistic effects at high $Z$, the ratio of hadronic to muonic vacuum polarization remains remarkably stable, deviating by less than $10\%$ from the established $67\%$ non-relativistic benchmark value
title Hadronic vacuum polarization effect in muonic atoms
topic Atomic Physics
Nuclear Theory
Quantum Physics
url https://arxiv.org/abs/2509.01311