English

$\bar{D}^{(*)}_{s}D^{(*)}$ molecular state with $J^{P}=1^{+}$

High Energy Physics - Phenomenology 2021-11-23 v4

Abstract

In this paper, we construct Dˉs()D()\bar{D}^{(*)}_{s}D^{(*)}-molecule-type interpolating currents J(±)μ(x)J_{(\pm)\mu}(x) with JP=1+J^{P}=1^{+}, calculate the corresponding mass and magnetic moment using the QCD sum rule method and its extension in the weak electromagnetic field, and study the processes of Z(±)csZ_{(\pm)cs} to ηcK\eta_{c}K^{*}, J/ψKJ/\psi K, DˉDs\bar{D}D^{*}_{s}, and DˉDs\bar{D}^{*}D_{s} via three-point sum rules. The numerical values are mZ(±)cs=3.990.14+0.17 \mboxGeVm_{Z_{(\pm)cs}}=3.99^{+0.17}_{-0.14}~\mbox{GeV}, and λZ(±)cs=2.070.16+0.28×102 \mboxGeV5\lambda_{Z_{(\pm)cs}}=2.07^{+0.28}_{-0.16}\times10^{-2}~\mbox{GeV}^{5}, μZ(±)cs=0.180.09+0.16 μN\mu_{Z_{(\pm)cs}}=0.18^{+0.16}_{-0.09}~\mu_{N} with μN\mu_{N} the nucleon magneton, ΓZ(+)cs=17.478.08+12.70\Gamma_{Z_{(+)cs}}=17.47^{+12.70}_{-8.08}, and ΓZ()cs=13.866.51+10.37\Gamma_{Z_{(-)cs}}=13.86^{+10.37}_{-6.51}. The masses are in agreement with the recently measured value of Zcs(3985)Z_{cs}(3985) by the BESIII Collaboration, mZcsexp=(3982.52.6+1.8±2.1) \mboxMeVm^{exp}_{Z_{cs}}=(3982.5^{+1.8}_{-2.6}\pm2.1)~\mbox{MeV}. The widths are compatible with the experimental value, ΓZcsexp=(12.84.4+5.3±3.0) \mboxMeV\Gamma^{exp}_{Z_{cs}}=(12.8^{+5.3}_{-4.4}\pm3.0)~\mbox{MeV}. The magnetic moment and the various decay modes can help us to determine the inner structure of Zcs(3985)Z_{cs}(3985) when being confronted with experimental data in the future.

Keywords

Cite

@article{arxiv.2011.14313,
  title  = {$\bar{D}^{(*)}_{s}D^{(*)}$ molecular state with $J^{P}=1^{+}$},
  author = {Yong-Jiang Xu and Yong-Lu Liu and Chun-Yu Cui and Ming-Qiu Huang},
  journal= {arXiv preprint arXiv:2011.14313},
  year   = {2021}
}

Comments

25 pages, 4 figures, published version

R2 v1 2026-06-23T20:34:36.541Z