Charmed $Λ_c^+$ baryon decays into light scalar mesons in the topological $SU(3)_f$ framework
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arXiv
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| Natura: | Preprint |
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2025
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| author | Wang, Y. L. Hsiao, Y. K. |
| author_facet | Wang, Y. L. Hsiao, Y. K. |
| contents | Using the topological-diagram approach based on $SU(3)$ flavor symmetry, we investigate two-body $Λ_c^+\to {\bf B}S$ decays, where ${\bf B}$ denotes the final-state baryon and $S$ refers to a light scalar meson, such as $f_0/f_0(980)$, $a_0/a_0(980)$, $σ_0/f_0(500)$, or $κ/K_0^*(700)$. Our analysis indicates that interpreting the light scalar mesons as tetraquark states provides a more consistent description of the currently available experimental data. In particular, this framework naturally accommodates the experimentally observed branching fraction ${\cal B}(Λ_c^+ \to Λa_0^+)$, which exceeds predictions based solely on long-distance effects by an order of magnitude. Within the tetraquark scenario, we predict ${\cal B}(Λ_c^+\to Σ^+ f_0)=(4.9\pm 1.9)\times 10^{-2}$ and ${\cal B}(Λ_c^+\to p f_0)=(3.6\pm 1.4)\times 10^{-3}$. Owing to $f_0-σ_0$ mixing, ${\cal B}(Λ_c^+\to Σ^+ σ_0)$ and ${\cal B}(Λ_c^+\to pσ_0)$ are suppressed to the levels of $1\times 10^{-3}$ and $5\times 10^{-5}$, respectively. These modes therefore provide sensitive probes of the internal structure of the light scalar mesons. More generally, the remaining branching ratios of $Λ_c^+ \to {\bf B} S$ are found to be comparable to those of $Λ_c^+ \to {\bf B}M$, where $M$ denotes a pseudoscalar meson. Their predicted sizes suggest that these decay modes should be accessible to ongoing and near-future experimental studies at BESIII, Belle II, and LHCb. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2505_21311 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | Charmed $Λ_c^+$ baryon decays into light scalar mesons in the topological $SU(3)_f$ framework Wang, Y. L. Hsiao, Y. K. High Energy Physics - Phenomenology High Energy Physics - Experiment Using the topological-diagram approach based on $SU(3)$ flavor symmetry, we investigate two-body $Λ_c^+\to {\bf B}S$ decays, where ${\bf B}$ denotes the final-state baryon and $S$ refers to a light scalar meson, such as $f_0/f_0(980)$, $a_0/a_0(980)$, $σ_0/f_0(500)$, or $κ/K_0^*(700)$. Our analysis indicates that interpreting the light scalar mesons as tetraquark states provides a more consistent description of the currently available experimental data. In particular, this framework naturally accommodates the experimentally observed branching fraction ${\cal B}(Λ_c^+ \to Λa_0^+)$, which exceeds predictions based solely on long-distance effects by an order of magnitude. Within the tetraquark scenario, we predict ${\cal B}(Λ_c^+\to Σ^+ f_0)=(4.9\pm 1.9)\times 10^{-2}$ and ${\cal B}(Λ_c^+\to p f_0)=(3.6\pm 1.4)\times 10^{-3}$. Owing to $f_0-σ_0$ mixing, ${\cal B}(Λ_c^+\to Σ^+ σ_0)$ and ${\cal B}(Λ_c^+\to pσ_0)$ are suppressed to the levels of $1\times 10^{-3}$ and $5\times 10^{-5}$, respectively. These modes therefore provide sensitive probes of the internal structure of the light scalar mesons. More generally, the remaining branching ratios of $Λ_c^+ \to {\bf B} S$ are found to be comparable to those of $Λ_c^+ \to {\bf B}M$, where $M$ denotes a pseudoscalar meson. Their predicted sizes suggest that these decay modes should be accessible to ongoing and near-future experimental studies at BESIII, Belle II, and LHCb. |
| title | Charmed $Λ_c^+$ baryon decays into light scalar mesons in the topological $SU(3)_f$ framework |
| topic | High Energy Physics - Phenomenology High Energy Physics - Experiment |
| url | https://arxiv.org/abs/2505.21311 |