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Decay properties of light $1^{-+}$ hybrids

High Energy Physics - Lattice 2025-02-18 v2 High Energy Physics - Experiment High Energy Physics - Phenomenology

Abstract

We explore the decay properties of the isovector and isoscalar 1+1^{-+} light hybrids, π1\pi_1 and η1\eta_1, in Nf=2N_f=2 lattice QCD at a pion mass mπ417 MeVm_\pi \approx 417~\mathrm{MeV}. The McNeile and Michael method is adopted to extract the effective couplings for individual decay modes, which are used to estimate the partial decay widths of π1(1600)\pi_1(1600) and η1(1855)\eta_1(1855) by assuming SU(3) symmetry. The partial decay widths of π1(1600)\pi_1(1600) are predicted to be (Γb1π,Γf1(1285)π,Γρπ,ΓKKˉ)=(325±75,O(10),52±7,8.6±1.3) MeV(\Gamma_{b_1\pi}, \Gamma_{f_1(1285)\pi}, \Gamma_{\rho\pi}, \Gamma_{K^*\bar{K}}) = (325 \pm 75, \mathcal{O}(10), 52 \pm 7, 8.6 \pm 1.3)~\mathrm{MeV}, and the total width is estimated to be 396±90 MeV396 \pm 90~\mathrm{MeV}, considering only statistical errors. If η1(1855)\eta_1(1855) and the 4.4σ4.4\sigma signal observed by BESIII (labeled as η1(2200)\eta_1(2200)) are taken as the two mass eigenstates of the isoscalar 1+1^{-+} light hybrids in SU(3), then the dominant decay channel(s) of η1(1855)\eta_1(1855) (η1(2200)\eta_1(2200)) is K1(1270)KˉK_1(1270)\bar{K} (K1(1270)KˉK_1(1270)\bar{K} and K1(1400)KˉK_1(1400)\bar{K}) through the 1+()0(+)1^{+(-)}0^{-(+)} mode. The vector-vector decay modes are also significant for the two η1\eta_1 states. Using the mixing angle α22.7\alpha \approx 22.7^\circ obtained from lattice QCD for the two η1\eta_1 states, the total widths are estimated to be Γη1(1855)=282(85) MeV\Gamma_{\eta_1(1855)}=282(85)~\mathrm{MeV} and Γη1(2200)=455(143) MeV\Gamma_{\eta_1(2200)}=455(143)~\mathrm{MeV}. The former is compatible with the experimental width of η1(1855)\eta_1(1855). Although many systematic uncertainties are not well controlled, these results are qualitatively informative for the experimental search for light hybrids.

Keywords

Cite

@article{arxiv.2409.14410,
  title  = {Decay properties of light $1^{-+}$ hybrids},
  author = {Juzheng Liang and Siyang Chen and Ying Chen and Chunjiang Shi and Wei Sun},
  journal= {arXiv preprint arXiv:2409.14410},
  year   = {2025}
}