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Semileptonic and nonleptonic weak decays of psi(1S,2S) and η_(c)(1S,2S) to D_((s)) in the covariant light-front approach

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arxiv 2311.04431 v2 pith:QO26B6Y2 submitted 2023-11-08 hep-ph

Semileptonic and nonleptonic weak decays of psi(1S,2S) and η_(c)(1S,2S) to D_((s)) in the covariant light-front approach

classification hep-ph
keywords weakdecaysdecaynonleptonicsemileptonicbranchingclfqmcovariant
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In addition to the strong and electromagnetic decay modes, the $\psi(1S,2S)$ and $\eta_{c}(1S,2S)$ can also decay via the weak interaction. Such weak decays can be detected by the high-luminosity heavy-flavor experiments. At present, some of the semileptonic and nonleptonic $J/\Psi$ weak decays have been measured at BESIII. Researching for these charmonium weak decays to $D_{(s)}$ meson can provide a platform to check of the standard model (SM) and probe new physics (NP). So we investigate the semileptonic and nonleptonic weak decays of $\psi(1S,2S)$ and $\eta_{c}(1S,2S)$ to $D_{(s)}$ within the covariant light-front quark model (CLFQM). With form factors of the transitions $\psi(1S,2S)\to D_{(s)}$ and $\eta_{c}(1S,2S)\to D_{(s)}$ calculated under the CLFQM, we predict and discuss some physical observables, such as the branching ratios, the longitudinal polarizations $f_{L}$ and the forward-backward asymmetries $A_{FB}$. One can find that the Cabibbo-favored semi-leptonic decay channels $\psi(1S,2S)\to D_{s}^{-}\ell^{+}\nu_{\ell}$ with $\ell=e,\mu$ and the nonleptonic decay modes $\psi(1S,2S)\to D_{s}^{-}\rho^{+}$ have relatively large branching ratios of the order $\mathcal{O}(10^{-9})$, which are most likely to be accessible at the future high-luminosity experiments.

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  1. Systematic analysis of $D_{(s)}$ meson semi-leptonic decays in the covariant light-front quark model

    hep-ph 2025-11 unverdicted novelty 4.0

    CLFQM calculations of D(s) to P/S/V/A form factors and branching ratios agree with data for most P and V channels but show notable discrepancies for several S and A channels.