$\phi$ meson in nuclear matter and atomic nuclei
Abstract
The properties (masses and decay widths) of the meson are investigated in nuclear matter from the meson self-energy, using the tree-level Lagrangian, and, incorporating in-medium masses of (anti)kaons calculated within the quark meson coupling (QMC) model. These mass shifts and decay widths are incorporated in the Breit-Wigner spectral function of the meson to calculate the production cross-section of in asymmetric nuclear matter. Considerable modifications to the production cross-section are observed at normal nuclear matter density, driven by the in-medium mass reduction and the increase in the decay width of meson. The potential experienced by meson in nuclear matter is used to study the possibility of formation of the mesic bound state with atomic nuclei. We explore the potential formation of -mesic bound states in , , , , , and nuclei by investigating their binding energies and absorption widths based on the corresponding -nucleus potentials. Our study shows shallow bound states with the light nuclei and deeply bound states in heavy nuclei. Among the investigated nuclei, a particularly distinct signal for a -mesic bound state is identified in , suggesting its potential experimental observability. The work provides valuable insights into meson interactions in infinite nuclear matter and the potential formation of exotic -mesic nuclear states, offering promising probes for strongly interacting matter in the upcoming experiments at J-PARC, JLab, and @FAIR physics program.
Keywords
Cite
@article{arxiv.2502.08320,
title = {$\phi$ meson in nuclear matter and atomic nuclei},
author = {Arpita Mondal and Amruta Mishra},
journal= {arXiv preprint arXiv:2502.08320},
year = {2025}
}
Comments
11 pages, 10 figures,