English

Transitions of $B_c\rightarrow \psi(1S,2S)$ and the modified harmonic oscillator wave function in LFQM

High Energy Physics - Phenomenology 2014-01-29 v2 High Energy Physics - Experiment

Abstract

The LHCb_b collaboration has systematically measured the rates of BcJ/ψKB_c\to J/\psi K, BcJ/ψDsB_c\to J/\psi D_s, BcJ/ψDsB_c\to J/\psi D_s^* and Bcψ(2S)πB_c\to \psi(2S) \pi. The new data enable us to study relevant theoretical models and further determine the model parameters. In this work, We calculate the form factors for the transitions BcJ/ψB_c\to J/\psi and Bcψ(2S)B_c\to \psi(2S) numerically, then determine the partial widths of the semi-leptonic and non-leptonic decays. The theoretical predictions on the ratios of Γ(BcJ/ψK)/Γ(BcJ/ψπ)\Gamma(B_c\to J/\psi K)/\Gamma(B_c\to J/\psi \pi), Γ(BcJ/ψDs)/Γ(BcJ/ψπ)\Gamma(B_c\to J/\psi D_s)/\Gamma(B_c\to J/\psi \pi) and Γ(BcJ/ψDs)/Γ(BcJ/ψπ)\Gamma(B_c\to J/\psi D_s^*)/\Gamma(B_c\to J/\psi \pi) are consistent with data within only 1σ\sigma. Especially, for calculating Γ(Bcψ(2S)X)\Gamma(B_c\to \psi(2S)X) the modified harmonic oscillator wave function (HOWF) which we developed in early works is employed and the results indicate that the modified harmonic oscillator wave function works better than the traditional HOWF.

Keywords

Cite

@article{arxiv.1307.5925,
  title  = {Transitions of $B_c\rightarrow \psi(1S,2S)$ and the modified harmonic oscillator wave function in LFQM},
  author = {Hong-Wei Ke and Tan Liu and Xue-Qian Li},
  journal= {arXiv preprint arXiv:1307.5925},
  year   = {2014}
}

Comments

9 pages, 1 figure, 3 tables