Analysis of $Σ^*$ via isospin selective reaction $K_Lp \to π^+Σ^0$

Fuente: arXiv
Guardado en:
Detalles Bibliográficos
Autores principales: Guo, Dan, Shi, Jun, Strakovsky, Igor, Zou, Bing-Song
Formato: Preprint
Publicado: 2025
Materias:
Acceso en línea:
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
_version_ 1866913981847830528
author Guo, Dan
Shi, Jun
Strakovsky, Igor
Zou, Bing-Song
author_facet Guo, Dan
Shi, Jun
Strakovsky, Igor
Zou, Bing-Song
contents The isospin-selective reaction $K_Lp \to π^+Σ^0$ provides a clean probe for investigating $I=1$ $Σ^*$ resonances. In this work, we perform an analysis of this reaction using an effective Lagrangian approach for the first time, incorporating the well-established $Σ(1189) 1/2^+$, $Σ(1385) 3/2^+$, $Σ(1670) 3/2^-$, $Σ(1775) 5/2^-$ states, while also exploring contributions from other unestablished states. By fitting the available differential cross section and recoil polarization data, adhering to partial-wave phase conventions same as PDG, we find that besides the established resonances, contributions from $Σ(1660) 1/2^+$, $Σ(1580) 3/2^-$ and a $Σ^*(1/2^-)$ improve the description. Notably, a $Σ^*(1/2^-)$ resonance with mass around 1.54 GeV, consistent with $Σ(1620)1/2^-$, is found to be essential for describing the data in this channel, a stronger indication than found in previous analyses focusing on $πΛ$ final states. While providing complementary support for $Σ(1660) 1/2^+$ and $Σ(1580) 3/2^-$, our results highlight the importance of the $Σ(1620) 1/2^-$ region in $K_Lp \to π^+Σ^0$. Future high-precision measurements are needed to solidify these findings and further constrain the $Σ^*$ spectrum.
format Preprint
id arxiv_https___arxiv_org_abs_2504_21343
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Analysis of $Σ^*$ via isospin selective reaction $K_Lp \to π^+Σ^0$
Guo, Dan
Shi, Jun
Strakovsky, Igor
Zou, Bing-Song
High Energy Physics - Phenomenology
Nuclear Theory
The isospin-selective reaction $K_Lp \to π^+Σ^0$ provides a clean probe for investigating $I=1$ $Σ^*$ resonances. In this work, we perform an analysis of this reaction using an effective Lagrangian approach for the first time, incorporating the well-established $Σ(1189) 1/2^+$, $Σ(1385) 3/2^+$, $Σ(1670) 3/2^-$, $Σ(1775) 5/2^-$ states, while also exploring contributions from other unestablished states. By fitting the available differential cross section and recoil polarization data, adhering to partial-wave phase conventions same as PDG, we find that besides the established resonances, contributions from $Σ(1660) 1/2^+$, $Σ(1580) 3/2^-$ and a $Σ^*(1/2^-)$ improve the description. Notably, a $Σ^*(1/2^-)$ resonance with mass around 1.54 GeV, consistent with $Σ(1620)1/2^-$, is found to be essential for describing the data in this channel, a stronger indication than found in previous analyses focusing on $πΛ$ final states. While providing complementary support for $Σ(1660) 1/2^+$ and $Σ(1580) 3/2^-$, our results highlight the importance of the $Σ(1620) 1/2^-$ region in $K_Lp \to π^+Σ^0$. Future high-precision measurements are needed to solidify these findings and further constrain the $Σ^*$ spectrum.
title Analysis of $Σ^*$ via isospin selective reaction $K_Lp \to π^+Σ^0$
topic High Energy Physics - Phenomenology
Nuclear Theory
url https://arxiv.org/abs/2504.21343