Isotone Chain Study of $\bar{p}$-atom spectroscopy and Strong Spin-orbit splittings

Fuente: arXiv
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Main Authors: Yoshimura, Kenta, Yasunaga, Shunsuke, Jido, Daisuke, Fujioka, Hiroyuki
Format: Preprint
Published: 2025
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author Yoshimura, Kenta
Yasunaga, Shunsuke
Jido, Daisuke
Fujioka, Hiroyuki
author_facet Yoshimura, Kenta
Yasunaga, Shunsuke
Jido, Daisuke
Fujioka, Hiroyuki
contents Antiprotonic atoms have served as a pivotal tool for investigating the properties of baryon-baryon interactions, including their spin dependence. Examining the spin-orbit splittings induced by their strong interactions also could help clarify the nature of the $\bar{p}$-nucleus interactions and their fraction mediated by scalar and vector mesons. Although the strong spin-orbit splittings for a certain nucleus have been observed experimentally, thorough theoretical investigations have not yet been conducted. In this study, theoretical calculations based on the Dirac equation are systematically performed for nuclei along several isotone ``chains''. As a result, it is found that the magnitude of the strong spin-orbit splittings exhibits a significant dependence not only on the corresponding level shifts and widths almost linearly, but also on whether the optical potential enters as a vector or scalar potential. A simple perturbative analysis indicates that the relativistic corrections have a dominant effect the magnitude of the splittings. These results are expected to provide deeper insights into $\bar{p}$-nucleus interactions, and by extension baryon-baryon interactions, as well as into the properties of the mesons that mediate them.
format Preprint
id arxiv_https___arxiv_org_abs_2511_07169
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Isotone Chain Study of $\bar{p}$-atom spectroscopy and Strong Spin-orbit splittings
Yoshimura, Kenta
Yasunaga, Shunsuke
Jido, Daisuke
Fujioka, Hiroyuki
High Energy Physics - Phenomenology
Nuclear Theory
Antiprotonic atoms have served as a pivotal tool for investigating the properties of baryon-baryon interactions, including their spin dependence. Examining the spin-orbit splittings induced by their strong interactions also could help clarify the nature of the $\bar{p}$-nucleus interactions and their fraction mediated by scalar and vector mesons. Although the strong spin-orbit splittings for a certain nucleus have been observed experimentally, thorough theoretical investigations have not yet been conducted. In this study, theoretical calculations based on the Dirac equation are systematically performed for nuclei along several isotone ``chains''. As a result, it is found that the magnitude of the strong spin-orbit splittings exhibits a significant dependence not only on the corresponding level shifts and widths almost linearly, but also on whether the optical potential enters as a vector or scalar potential. A simple perturbative analysis indicates that the relativistic corrections have a dominant effect the magnitude of the splittings. These results are expected to provide deeper insights into $\bar{p}$-nucleus interactions, and by extension baryon-baryon interactions, as well as into the properties of the mesons that mediate them.
title Isotone Chain Study of $\bar{p}$-atom spectroscopy and Strong Spin-orbit splittings
topic High Energy Physics - Phenomenology
Nuclear Theory
url https://arxiv.org/abs/2511.07169