Investigation of $Δ(1232)$ resonance substructure in $pγ^*\to Δ(1232)$ process through helicity amplitudes

Fuente: arXiv
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Main Authors: Kaewsnod, A., Xu, K., Sangkhakrit, T., Zhao, Z., Sreethawong, W., Limphirat, A., Khosonthongkee, K., Yan, Y.
Format: Preprint
Published: 2025
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author Kaewsnod, A.
Xu, K.
Sangkhakrit, T.
Zhao, Z.
Sreethawong, W.
Limphirat, A.
Khosonthongkee, K.
Yan, Y.
author_facet Kaewsnod, A.
Xu, K.
Sangkhakrit, T.
Zhao, Z.
Sreethawong, W.
Limphirat, A.
Khosonthongkee, K.
Yan, Y.
contents This work investigates the substructure of the $Δ(1232)$ resonance in the $pγ^*\to Δ(1232)$ process through helicity transition amplitudes within the quark model framework. We consider the involved baryons composed of three quarks, and both the quark core and meson cloud contribute to the transition amplitudes. The comparison of theoretical results with experimental data reveals that, rather than the $L=0$ component of the $Δ(1232)$ resonance, it is the $L=2$ component that significantly affects its $S_{1/2}$ amplitude. These findings indicate that the $Δ(1232)$ resonance likely contains a substantial $L=2$ component, challenging the conventional view of the $Δ(1232)$ resonance as an $L=0$ baryon.
format Preprint
id arxiv_https___arxiv_org_abs_2503_16838
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Investigation of $Δ(1232)$ resonance substructure in $pγ^*\to Δ(1232)$ process through helicity amplitudes
Kaewsnod, A.
Xu, K.
Sangkhakrit, T.
Zhao, Z.
Sreethawong, W.
Limphirat, A.
Khosonthongkee, K.
Yan, Y.
High Energy Physics - Phenomenology
Nuclear Theory
This work investigates the substructure of the $Δ(1232)$ resonance in the $pγ^*\to Δ(1232)$ process through helicity transition amplitudes within the quark model framework. We consider the involved baryons composed of three quarks, and both the quark core and meson cloud contribute to the transition amplitudes. The comparison of theoretical results with experimental data reveals that, rather than the $L=0$ component of the $Δ(1232)$ resonance, it is the $L=2$ component that significantly affects its $S_{1/2}$ amplitude. These findings indicate that the $Δ(1232)$ resonance likely contains a substantial $L=2$ component, challenging the conventional view of the $Δ(1232)$ resonance as an $L=0$ baryon.
title Investigation of $Δ(1232)$ resonance substructure in $pγ^*\to Δ(1232)$ process through helicity amplitudes
topic High Energy Physics - Phenomenology
Nuclear Theory
url https://arxiv.org/abs/2503.16838