Charmed Baryon Weak Decays with SU(3) Flavor Symmetry
Abstract: We study the semileptonic and non-leptonic charmed baryon decays with $SU(3)$ flavor symmetry, where the charmed baryons can be ${\bf B}{c}=(\Xi_c0,\Xi_c+,\Lambda_c+)$, ${\bf B}'{c}=(\Sigma_c{(++,+,0)},\Xi_{c}{\prime(+,0)},\Omega_c0)$, ${\bf B}{cc}=(\Xi{cc}{++},\Xi_{cc}+,\Omega_{cc}+)$, or ${\bf B}{ccc}=\Omega{++}{ccc}$. With ${\bf B}n{(\prime)}$ denoted as the baryon octet (decuplet), we find that the ${\bf B}{c}\to {\bf B}'n\ell+\nu\ell$ decays are forbidden, while the $\Omega_c0\to \Omega-\ell+\nu_\ell$, $\Omega_{cc}+\to\Omega_c0\ell+\nu_\ell$, and $\Omega_{ccc}{++}\to \Omega_{cc}+\ell+\nu_\ell$ decays are the only existing Cabibbo-allowed modes for ${\bf B}'{c}\to {\bf B}'_n\ell+\nu\ell$, ${\bf B}{cc}\to {\bf B}'_c\ell+\nu\ell$, and ${\bf B}{ccc}\to {\bf B}{cc}{(\prime)}\ell+\nu_\ell$, respectively. We predict the rarely studied ${\bf B}{c}\to {\bf B}_n{(\prime)}M$ decays, such as ${\cal B}(\Xi_c0\to\Lambda0\bar K0,\,\Xi_c+\to\Xi0\pi+)=(8.3\pm 0.9,8.0\pm 4.1)\times 10{-3}$ and ${\cal B}(\Lambda_c+\to \Delta{++}\pi-,\,\Xi_c0\to\Omega- K+)=(5.5\pm 1.3,4.8\pm 0.5)\times 10{-3}$. For the observation, the doubly and triply charmed baryon decays of $\Omega{cc}{+}\to \Xi_c+\bar K0$, $\Xi_{cc}{++}\to (\Xi_c+\pi+$, $\Sigma_c{++}\bar K0)$, and $\Omega_{ccc}{++}\to (\Xi_{cc}{++}\bar K0,\Omega_{cc}+\pi+,\Xi_c+ D+)$ are the favored Cabibbo-allowed decays, which are accessible to the BESIII and LHCb experiments.
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