Investigating $D_s^+ \to π^0 \ell^+ ν_\ell$ decay process within QCD sum rule approach (2306.07595v2)
Abstract: In this paper, the semileptonic decays $D_s+ \to \pi0\ell+ \nu_\ell$ with $\ell=(e,\mu)$ are investigated by using the light-cone sum rule approach. Firstly, the neutral meson mixing scheme between $\pi0$, $\eta$, $\eta\prime$ and pseudoscalar gluonium $G$ is discussed in a unified way, which leads to the direct connection between two different channels for $D_s+\to \pi0\ell+\nu_\ell$ and $D_s+ \to \eta\ell+\nu_\ell$ by the $\pi0-\eta$ mixing angle. Then we calculated the $D_s\to \pi0$ transition form factors (TFFs) within QCD light-cone sum rule approach up to next-to-leading order correction. At the large recoil point, we have $f_+{D_s+\pi0}(0)=0.0113_{-0.0019}{+0.0024}$ and $f_-{D_s+\pi0}(0)=0.0020_{-0.0009}{+0.0008}$. Furthermore, the TFFs are extrapolated to the whole physical $q2$-region by using the simplified $z(q2)$-series expansion. The behaviors of TFFs and related three angular coefficient functions $a_{\theta_\ell}(q2)$, $b_{\theta_\ell}(q2)$ and $c_{\theta_\ell}(q2)$ are given. The differential decay widths for $D_s+ \to \pi0\ell+ \nu_\ell$ with respect to $q2$ and $\cos\theta_\ell$ are presented, and also lead to the branching fractions ${\cal B}(D_s+\to \pi 0e+\nu_e) =2.60_{-0.51}{+0.57}\times 10{-5}$ and ${\cal B}(D_s+\to \pi 0\mu+\nu \mu )= 2.58{-0.51}{+0.56}\times 10{-5}$. These results show well agreement with the recent BESIII measurements and theoretical predictions. Then the differential distributions and integrated predictions for three angular observables, {\it i.e.} forward-backward asymmetries, $q2$-differential flat terms and lepton polarization asymmetries are given separately. Lastly, we estimate the ratio for different decay channels ${\cal R}{\pi 0/\eta}{\ell}=1.108{-0.071}{+0.039}\times 10{-3}$.
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