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Investigation for $D^+ \to \pi^+ \nu\bar\nu$ decay process within QCDSR approach

High Energy Physics - Phenomenology 2024-01-09 v1

Abstract

In the paper, we investigate the charmed meson rare decay process D+π+ννˉD^+ \to \pi^+\nu\bar\nu by using QCD sum rules approach. Firstly, the pion twist-2 and twist-3 distribution amplitude ξ\xi-moments ξ2;πnμ\langle\xi_{2;\pi}^n\rangle|_\mu up to 10th-order and ξ3;π(p,σ),nμ\langle \xi_{3;\pi}^{(p,\sigma),n}\rangle|_\mu up to fourth-order are calculated by using QCD sum rule under background field theory. After constructing the light-cone harmonic oscillator model for pion twist-2, 3 DAs, we get their behaviors by matching the calculated ξ\xi-moments. Then, the DπD\to \pi transition form factors are calculated by using QCD light-cone sum rules approach. The vector form factor at large recoil region is f+Dπ(0)=0.6270.080+0.120f_+^{D\to\pi}(0) = 0.627^{+0.120} _{-0.080}. By taking the rapidly z(q2,t)z(q^2,t) converging simplified series expansion, we present the TFFs and the corresponding angular coefficients in the whole squared momentum transfer physical region. Furthermore, we display the semileptonic decay process Dˉ0π+eνˉe\bar D^0 \to \pi^+ e\bar \nu_e differential decay widths and branching fraction with B(Dˉ0π+eνˉe)=0.3080.066+0.155×102{\cal B}(\bar D^0\to\pi^+e\bar\nu_e) = 0.308^{+0.155}_{-0.066} \times 10^{2}. The Dˉ0π+eνˉe\bar D^0\to\pi^+e\bar\nu_e differential/total predictions for forward-backward asymmetry, q2q^2-differential flat terms and lepton polarization asymmetry are also given. After considering the non-standard neutrino interactions, the predictions for the D+π+ννˉD^+ \to \pi^+ \nu\bar\nu branching fraction is B(D+π+ννˉ)=1.850.46+0.93×108{\cal B}(D^+ \to \pi^+ {\nu }{\bar\nu}) = 1.85^{+0.93}_{-0.46}\times10^{-8}.

Keywords

Cite

@article{arxiv.2401.03109,
  title  = {Investigation for $D^+ \to \pi^+ \nu\bar\nu$ decay process within QCDSR approach},
  author = {Yu Chen and Hai-Bing Fu and Tao Zhong and Sheng-Bo Wu and Dong Huang},
  journal= {arXiv preprint arXiv:2401.03109},
  year   = {2024}
}

Comments

12 pages, 9 figures