Heavy-Quark Spin Symmetry Violation effects in Charmed Baryon Production
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2024
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| author | Monkata, Nantana Sawasdipol, Prin Ponkhuha, Nongnapat Suntharawirat, Ratirat Arifi, Ahmad Jafar Samart, Daris |
| author_facet | Monkata, Nantana Sawasdipol, Prin Ponkhuha, Nongnapat Suntharawirat, Ratirat Arifi, Ahmad Jafar Samart, Daris |
| contents | In this work, we investigate the Heavy-Quark Spin Symmetry (HQSS) exhibited in the effective Lagrangians governing the three-point interactions of $D$ mesons, charmed baryons, and nucleons. We first construct the effective Lagrangians, and there are 12 distinct terms. As a result, we observe that the invariant Lagrangian under HQSS manifests exclusively in the pseudoscalar $D$ mesons coupling to nucleons and $Λ_c$ baryons, whereas nucleons and $Σ_c$ ($Σ_c^*$) baryons only couple with vector $D$ mesons. By taking into account the violated heavy-quark spin transformation, one can recover all interactions from the effective Lagrangians. Furthermore, we compute the differential cross-sections of the $p\bar p \to Y_c\bar{Y}_c'$ scatterings, where $Y_c,\bar{Y_c}' = Λ_c,~Σ_c,~Σ_c^*$, to reveal the residue of the violating HQSS (VHQSS) on charmed baryon production. Ultimately, by accounting for VHQSS, we aim for precise predictions of production rates, which are essential for the High-Energy Storage Ring (HESR) experiments at the Facility for Antiproton and Ion Research (FAIR). |
| format | Preprint |
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arxiv_https___arxiv_org_abs_2412_18280 |
| institution | arXiv |
| publishDate | 2024 |
| record_format | arxiv |
| spellingShingle | Heavy-Quark Spin Symmetry Violation effects in Charmed Baryon Production Monkata, Nantana Sawasdipol, Prin Ponkhuha, Nongnapat Suntharawirat, Ratirat Arifi, Ahmad Jafar Samart, Daris High Energy Physics - Phenomenology Nuclear Theory In this work, we investigate the Heavy-Quark Spin Symmetry (HQSS) exhibited in the effective Lagrangians governing the three-point interactions of $D$ mesons, charmed baryons, and nucleons. We first construct the effective Lagrangians, and there are 12 distinct terms. As a result, we observe that the invariant Lagrangian under HQSS manifests exclusively in the pseudoscalar $D$ mesons coupling to nucleons and $Λ_c$ baryons, whereas nucleons and $Σ_c$ ($Σ_c^*$) baryons only couple with vector $D$ mesons. By taking into account the violated heavy-quark spin transformation, one can recover all interactions from the effective Lagrangians. Furthermore, we compute the differential cross-sections of the $p\bar p \to Y_c\bar{Y}_c'$ scatterings, where $Y_c,\bar{Y_c}' = Λ_c,~Σ_c,~Σ_c^*$, to reveal the residue of the violating HQSS (VHQSS) on charmed baryon production. Ultimately, by accounting for VHQSS, we aim for precise predictions of production rates, which are essential for the High-Energy Storage Ring (HESR) experiments at the Facility for Antiproton and Ion Research (FAIR). |
| title | Heavy-Quark Spin Symmetry Violation effects in Charmed Baryon Production |
| topic | High Energy Physics - Phenomenology Nuclear Theory |
| url | https://arxiv.org/abs/2412.18280 |