Topological $SU(3)_f$ approach for two-body $Ω_c$ weak decays
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arXiv
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| Format: | Preprint |
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2023
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| _version_ | 1866910795789500416 |
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| author | Wang, Y. L. Zhao, H. J. Hsiao, Y. K. |
| author_facet | Wang, Y. L. Zhao, H. J. Hsiao, Y. K. |
| contents | We explore the two-body non-leptonic weak decays of $Ω_c^0$ into final states ${\bf B}^{(*)}M$ and ${\bf B}^{(*)}V$, where ${\bf B}^{(*)}$ denotes an octet (a decuplet) baryon and $M(V)$ represents a pseudoscalar (vector) meson. We employ the topological $SU(3)_f$ approach to depict and parameterize the $W$-emission and $W$-exchange processes. We find that the topological parameters can be associated and combined, making them extractable for calculation. Consequently, we explain the partially measured branching fractions relative to ${\cal B}(Ω_c^0\to Ω^-π^+)$, recombined or kept as the following ratios: ${\cal B}(Ω_c^0\toΞ^{*0}\bar K^{*0})/{\cal B}(Ω_c^0\toΩ^-ρ^+)=0.28\pm 0.11$, ${\cal B}(Ω_c^0\toΞ^-π^+)/{\cal B}(Ω_c^0\toΞ^{0}\bar K^{0})=0.10\pm 0.02$, and ${\cal B}(Ω_c^0 \to Ω^- K^+)/{\cal B}(Ω_c^0 \to Ω^- π^+)=0.06\pm 0.01$. In particular, we present ${\cal B}(Ω_c^0 \to Ξ^0 π^0)=(2.3\pm0.2)\times 10^{-4}$ as half the value of ${\cal B}(Ω_c^0 \to Ξ^- π^+)$ in the approximate isospin relation, and highlight potential candidates for testing $SU(3)_f$ symmetry breaking. |
| format | Preprint |
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arxiv_https___arxiv_org_abs_2310_18896 |
| institution | arXiv |
| publishDate | 2023 |
| record_format | arxiv |
| spellingShingle | Topological $SU(3)_f$ approach for two-body $Ω_c$ weak decays Wang, Y. L. Zhao, H. J. Hsiao, Y. K. High Energy Physics - Phenomenology High Energy Physics - Experiment We explore the two-body non-leptonic weak decays of $Ω_c^0$ into final states ${\bf B}^{(*)}M$ and ${\bf B}^{(*)}V$, where ${\bf B}^{(*)}$ denotes an octet (a decuplet) baryon and $M(V)$ represents a pseudoscalar (vector) meson. We employ the topological $SU(3)_f$ approach to depict and parameterize the $W$-emission and $W$-exchange processes. We find that the topological parameters can be associated and combined, making them extractable for calculation. Consequently, we explain the partially measured branching fractions relative to ${\cal B}(Ω_c^0\to Ω^-π^+)$, recombined or kept as the following ratios: ${\cal B}(Ω_c^0\toΞ^{*0}\bar K^{*0})/{\cal B}(Ω_c^0\toΩ^-ρ^+)=0.28\pm 0.11$, ${\cal B}(Ω_c^0\toΞ^-π^+)/{\cal B}(Ω_c^0\toΞ^{0}\bar K^{0})=0.10\pm 0.02$, and ${\cal B}(Ω_c^0 \to Ω^- K^+)/{\cal B}(Ω_c^0 \to Ω^- π^+)=0.06\pm 0.01$. In particular, we present ${\cal B}(Ω_c^0 \to Ξ^0 π^0)=(2.3\pm0.2)\times 10^{-4}$ as half the value of ${\cal B}(Ω_c^0 \to Ξ^- π^+)$ in the approximate isospin relation, and highlight potential candidates for testing $SU(3)_f$ symmetry breaking. |
| title | Topological $SU(3)_f$ approach for two-body $Ω_c$ weak decays |
| topic | High Energy Physics - Phenomenology High Energy Physics - Experiment |
| url | https://arxiv.org/abs/2310.18896 |