English

Decays of $1^{-+}$ Charmoniumlike Hybrid

High Energy Physics - Lattice 2024-03-20 v2 High Energy Physics - Experiment High Energy Physics - Phenomenology

Abstract

By extracting the transition amplitudes, we give the first lattice QCD prediction of the two-body decay partial widths of the 1+1^{-+} charmoniumlike hybrid ηc1\eta_{c1}. Given the calculated mass value mηc1=4.329(36)m_{\eta_{c1}}=4.329(36) GeV, the ηc1\eta_{c1} decay is dominated by the open charm modes D1DˉD_1\bar{D}, DDˉD^*\bar{D} and DDˉD^*\bar{D}^* with partial widths of 258(133)258(133) MeV, 88(18)88(18) MeV and 150(118)150(118) MeV, respectively. The coupling of ηc1\eta_{c1} to χc1\chi_{c1} plus a flavor singlet pseudoscalar is not small, but χc1η\chi_{c1}\eta decay is suppressed by the small ηη\eta-\eta' mixing angle. The partial width of ηc1ηcη\eta_{c1}\to \eta_c\eta' is estimated to be around 1 MeV. We suggest experiments to search for ηc1\eta_{c1} in the PP-wave DDˉD^*\bar{D} and DDˉD^*\bar{D}^* systems. Especially, the polarization of DDˉD^*\bar{D}^* can be used to distinguish the 1+1^{-+} product (total spin S=1S=1) from 11^{--} products (S=0S=0).

Keywords

Cite

@article{arxiv.2306.12884,
  title  = {Decays of $1^{-+}$ Charmoniumlike Hybrid},
  author = {Chunjiang Shi and Ying Chen and Ming Gong and Xiangyu Jiang and Zhaofeng Liu and Wei Sun},
  journal= {arXiv preprint arXiv:2306.12884},
  year   = {2024}
}

Comments

17 pages, 7 figures. Revised to article format