English

Form factor for Dalitz decays from $J/\psi$ to light pseudoscalars

High Energy Physics - Lattice 2024-03-19 v1 High Energy Physics - Experiment High Energy Physics - Phenomenology

Abstract

We calculate the form factor M(q2)M(q^2) for the Dalitz decay J/ψγ(q2)η(Nf=1)J/\psi\to \gamma^*(q^2)\eta_{(N_f=1)} with η(Nf)\eta_{(N_f)} being the SU(NfN_f) flavor singlet pseudoscalar meson. The difference among the partial widths Γ(J/ψγη(Nf))\Gamma(J/\psi\to \gamma \eta_{(N_f)}) at different NfN_f can be attributed in part to the UA(1)\mathbf{U}_A(1) anomaly that induces a NfN_f scaling. M(q2)M(q^2)'s in Nf=1,2N_f=1,2 are both well described by the single pole model M(q2)=M(0)/(1q2/Λ2)M(q^2)=M(0)/(1-q^2/\Lambda^2). Combined with the known experimental results of the Dalitz decays J/ψPe+eJ/\psi\to Pe^+e^-, the pseudoscalar mass mPm_P dependence of the pole parameter Λ\Lambda is approximated by Λ(mP2)=Λ1(1mP2/Λ22)\Lambda(m_P^2)=\Lambda_1(1-m_P^2/\Lambda_2^2) with Λ1=2.64(4) GeV\Lambda_1=2.64(4)~\mathrm{GeV} and Λ2=2.97(33) GeV\Lambda_2=2.97(33)~\mathrm{GeV}. These results provide inputs for future theoretical and experimental studies on the Dalitz decays J/ψPe+eJ/\psi\to Pe^+e^-.

Cite

@article{arxiv.2403.11842,
  title  = {Form factor for Dalitz decays from $J/\psi$ to light pseudoscalars},
  author = {Chunjiang Shi and Ying Chen and Xiangyu Jiang and Ming Gong and Zhaofeng Liu and Wei Sun},
  journal= {arXiv preprint arXiv:2403.11842},
  year   = {2024}
}

Comments

9 pages, 5 figures

R2 v1 2026-06-28T15:24:19.414Z