$ϕ$ meson properties in dense resonance matter at finite temperature

Fuente: arXiv
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Autores principales: Kaur, Manpreet, Kumar, Arvind
Formato: Preprint
Publicado: 2025
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author Kaur, Manpreet
Kumar, Arvind
author_facet Kaur, Manpreet
Kumar, Arvind
contents The effective mass and decay width of the $ϕ$ meson in the isospin asymmetric hot and dense resonance matter are studied using the effective Lagrangian framework considering the $ϕK \bar K $ interactions at one-loop level. In addition to spin$-1/2$ octet baryons, we consider the effect of resonances $Δ^{++,+,0,-}, Σ^{*\pm,0},Ξ^{*0,-}, Ω^{-}$, on the properties of $ϕ$ meson. The in-medium effects on the $ϕ$ meson properties are simulated through the effective masses of kaons and antikaons computed using the chiral SU(3) hadronic mean field model in the presence of resonance baryons. The loop integral appearing in the computation of $ϕ$ meson self energies is regularized using the dipole form factor with a cutoff parameter. The presence of resonance baryons within the medium at finite temperature is observed to significantly modify the effective mass and decay width of $ϕ$ mesons. Examining the $ϕ$ meson masses and decay width within a dense medium is anticipated to be essential for understanding experimental results from heavy-ion collision experiments.
format Preprint
id arxiv_https___arxiv_org_abs_2505_07065
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle $ϕ$ meson properties in dense resonance matter at finite temperature
Kaur, Manpreet
Kumar, Arvind
High Energy Physics - Phenomenology
Nuclear Theory
The effective mass and decay width of the $ϕ$ meson in the isospin asymmetric hot and dense resonance matter are studied using the effective Lagrangian framework considering the $ϕK \bar K $ interactions at one-loop level. In addition to spin$-1/2$ octet baryons, we consider the effect of resonances $Δ^{++,+,0,-}, Σ^{*\pm,0},Ξ^{*0,-}, Ω^{-}$, on the properties of $ϕ$ meson. The in-medium effects on the $ϕ$ meson properties are simulated through the effective masses of kaons and antikaons computed using the chiral SU(3) hadronic mean field model in the presence of resonance baryons. The loop integral appearing in the computation of $ϕ$ meson self energies is regularized using the dipole form factor with a cutoff parameter. The presence of resonance baryons within the medium at finite temperature is observed to significantly modify the effective mass and decay width of $ϕ$ mesons. Examining the $ϕ$ meson masses and decay width within a dense medium is anticipated to be essential for understanding experimental results from heavy-ion collision experiments.
title $ϕ$ meson properties in dense resonance matter at finite temperature
topic High Energy Physics - Phenomenology
Nuclear Theory
url https://arxiv.org/abs/2505.07065