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Evidence of the low-lying baryon $\Sigma^*(1/2^-)$ in the process $\Lambda_c^+\to \eta\pi^+\Lambda$

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arxiv 2405.09226 v2 pith:S65VDM22 submitted 2024-05-15 hep-ph

classification hep-ph
keywords lambdasigmaprocessbellelow-lyingmeasurementsbaryoncontribution
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Motivated by the Belle measurements of the process $\Lambda_c^+\to \eta\pi^+\Lambda$, we investigate this process by considering the contributions from the $\Lambda(1670)$, $a_0(980)$, and $\Sigma(1385)$. In addition, we also consider the predicted low-lying baryon $\Sigma^*(1/2^-)$. Our results involving the $\Sigma^*(1/2^-)$ are favored by fitting to the Belle data of the $\eta\Lambda$ and $\pi^+\Lambda$ invariant mass distributions. Furthermore, we predict the $\eta\pi^+$ invariant mass distribution and the angular distribution $d\Gamma/d{\rm cos}\theta$, which are significantly different depending on whether or not the contribution from the $\Sigma^*(1/2^-)$ is considered. Finally, we show that, with the contribution from the $\Sigma^*(1/2^-)$, the calculated Dalizt plot agrees with the Belle measurements. Future precise measurements of the process $\Lambda_c^+\to \eta\pi^+\Lambda$ could shed further light on the existence of the low-lying $\Sigma^*(1/2^-)$.

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  1. Revisiting the $\Lambda_c^+ \to n\pi^+\eta$ decay in light of the BESIII measurement

    hep-ph 2026-08 conditional novelty 5.0 of 10

    The measured π+η mass spectrum of Λc+ → n π+ η is best reproduced by chiral-unitary models that include the N(1440) nucleon excitation; the a2(1320) tensor meson does not improve the fit.

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