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Weak decays of triply heavy baryons in light front approach
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abstract
We analyze weak decays of triply heavy baryon $\Omega_{ccc}^{++}$ and calculate the form factors for $\Omega_{ccc}^{++}\to \Xi_{cc}^{++}/\Omega_{cc}^+$ transitions in a light front quark model. The momentum distributions in form factors are accessed via the pole-model parametrization. Using the results for form factors, we predict decay branching fractions for semi-leptonic decays, and obtain $\mathcal{B}(\Omega_{ccc}^{++}\to\Xi_{cc}^+e^+\nu_e)=0.08\%$, $\mathcal{B}(\Omega_{ccc}^{++}\to\Omega_{cc}^+e^+\nu_e)=1.23\%$. Forward-backward asymmetry and angular distributions are then investigated in this work. We also estimate branching fractions for a few color-allowed processes and find that the $\Omega_{ccc}^{++}\to\Omega_{cc}^+\pi^+$ has a sizable branching fraction: $\mathcal{B}(\Omega_{ccc}^{++}\to\Omega_{cc}^+\pi^+)=1.82\%$. We point out that the $\Omega_{ccc}^{++}\to\Omega_{cc}^+\pi^+$ is a golden channel for the discovery of the $\Omega_{ccc}^{++}$. This analysis can provide a useful reference for future experimental search in future.
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Scalar Triple-Heavy Tetraquark States With Quark Content $cc\bar{c}\bar{s}$
QCD sum rule analysis predicts scalar cc̄c̄s tetraquark states with masses near 4.94 to 5.08 GeV, including an ηc-Ds molecule and two diquark-antidiquark compact states.
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