Sea quark-gluon effect on the magnetic octupole deformation of decuplet baryons

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Autori principali: Bhall, Preeti, Garg, Ritu, Upadhyay, Alka
Natura: Preprint
Pubblicazione: 2025
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author Bhall, Preeti
Garg, Ritu
Upadhyay, Alka
author_facet Bhall, Preeti
Garg, Ritu
Upadhyay, Alka
contents The magnetic octupole moment of $J^P= \frac{3}{2}^+$ decuplet baryons are discussed in the statistical framework, treating baryons as an ensembles of quark-gluon Fock states. The probabilities associated with multiple strange and non-strange Fock states depict the importance of sea in spin, flavor $\&$ color space, which are further merged into statistical parameters. The individual contribution of valence and sea (scalar, vector and tensor) to the magnetic octupole moment is calculated. The symmetry breaking in both sea and valence is experienced by a suppression factor $k(1-C_l)^{n-1}$ and a mass correction parameter 'r', respectively. The factor $k(1-C_l)^{n-1}$ systematically reduces the probabilities of Fock states containing multiple strange quark pairs. The octupole moment value is obtained -ve for $Δ^{++}, Δ^+, Σ^{*+}$ and +ve for $Δ^{-}, Σ^{*-}, Ξ^{*-}, Ω^-$ baryons with the domination of scalar (spin-0) sea. The computed results are compared with existing theoretical predictions, demonstrating good consistency. These predictions may serve as valuable inputs for future high-precision experiments and theoretical explorations in hadron structure.
format Preprint
id arxiv_https___arxiv_org_abs_2506_02531
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Sea quark-gluon effect on the magnetic octupole deformation of decuplet baryons
Bhall, Preeti
Garg, Ritu
Upadhyay, Alka
High Energy Physics - Phenomenology
The magnetic octupole moment of $J^P= \frac{3}{2}^+$ decuplet baryons are discussed in the statistical framework, treating baryons as an ensembles of quark-gluon Fock states. The probabilities associated with multiple strange and non-strange Fock states depict the importance of sea in spin, flavor $\&$ color space, which are further merged into statistical parameters. The individual contribution of valence and sea (scalar, vector and tensor) to the magnetic octupole moment is calculated. The symmetry breaking in both sea and valence is experienced by a suppression factor $k(1-C_l)^{n-1}$ and a mass correction parameter 'r', respectively. The factor $k(1-C_l)^{n-1}$ systematically reduces the probabilities of Fock states containing multiple strange quark pairs. The octupole moment value is obtained -ve for $Δ^{++}, Δ^+, Σ^{*+}$ and +ve for $Δ^{-}, Σ^{*-}, Ξ^{*-}, Ω^-$ baryons with the domination of scalar (spin-0) sea. The computed results are compared with existing theoretical predictions, demonstrating good consistency. These predictions may serve as valuable inputs for future high-precision experiments and theoretical explorations in hadron structure.
title Sea quark-gluon effect on the magnetic octupole deformation of decuplet baryons
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2506.02531