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Two-body charmed baryon decays involving decuplet baryon in the quark-diagram scheme

Published 27 Jun 2020 in hep-ph and hep-ex | (2006.15291v2)

Abstract: In the quark-diagram scheme, we study the charmed baryon decays of ${\bf B}_c\to {\bf B}* M$, where ${\bf B}_c$ is $\Lambda_c+$ or $\Xi_c{+(0)}$, together with ${\bf B}*$ ($M$) the decuplet baryon (pseudoscalar meson). It is found that only two $W$-exchange processes are allowed to contribute to ${\bf B}_c\to {\bf B}* M$. Particularly, we predict ${\cal B}(\Lambda_c+ \to \Sigma{*0(+)} \pi{+(0)})=(2.8\pm 0.4)\times 10{-3}$, which respects the isospin symmetry. Besides, we take into account the $SU(3)$ flavor symmetry breaking, in order to explain the observation of ${\cal B}(\Lambda_c+\to \Sigma{*+}\eta)$. For the decays involving $\Delta{++}(uuu)$, we predict ${\cal B}(\Lambda_c+\to \Delta{++} \pi-,\Xi_c+ \to \Delta{++} K-) =(7.0\pm 1.4,13.5\pm 2.7)\times 10{-4}$ as the largest branching fractions in the singly Cabibbo-suppressed $\Lambda_c+,\Xi_c+\to{\bf B}*M$ decay channels, respectively, which are accessible to the LHCb, BELLEII and BESIII experiments.

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