Abstract

The process $e^{+}e^{-} \to \phi \eta^{\prime}$ has been studied for the first time in detail using data sample collected with the BESIII detector at the BEPCII collider at center of mass energies from 2.05 to 3.08 GeV. A resonance with quantum numbers $J^{PC}=1^{--}$ is observed with mass $M$ = (2177.5 $\pm$ 4.8 (stat) $\pm$ 19.5 (syst)) MeV/${ \it{c}^{\mathrm{2}}}$ and width $\Gamma$ = (149.0 $\pm$ 15.6 (stat) $\pm$ 8.9 (syst)) MeV with a statistical significance larger than 10$\sigma$. The observed structure could be identified with the $\phi(2170)$, then the ratio of partial width between the $\phi \eta^{\prime}$ by BESIII and $\phi \eta$ by BABAR is ($\mathcal{B}^{R}_{\phi \eta}\Gamma^{R}_{ee})/{(\mathcal{B}^{R}_{\phi \eta^{\prime}}\Gamma^{R}_{ee})}$ = 0.23 $\pm$ 0.10 (stat) $\pm$ 0.18 (syst), which is smaller than the prediction of the $s\bar{s}g$ hybrid models by several orders of magnitude.

Highlights

  • One of the most challenging questions in contemporary physics is how quarks and gluons form hadrons

  • remarkable progress has been made in the charm sector during the last decade

  • similar to those found in heavier quarkonia

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Summary

INTRODUCTION

One of the most challenging questions in contemporary physics is how quarks and gluons form hadrons. It has been difficult to unambiguously identify so-called exotic hadrons, such as glueballs, hybrids and multiquarks, remarkable progress has been made in the charm sector during the last decade. Some of those newly observed charmoniumlike or bottomoniumlike states are good candidates for exotics [1–3]. Taking isospin effect into account, the contributions of ω-like and ρ-like states are suppressed in the φη and φη[0] modes These two decay modes are useful to measure the mass and width of φ-like states. Assuming that the observed structure in the process eþe− → Kþð1460ÞK− is φð2170Þ, it implies that the theoretical expectation for the hybrid state is not in agreement with the experimental results [29]. We present a measurement of the Born cross sections of eþe− → φη[0] as a function of center-ofmass (c.m.) energies from 2.05 to 3.08 GeV based on 20 data samples corresponding to an integrated luminosity of 640 pb−1 collected at the Beijing spectrometer (BESIII)

DETECTOR AND DATA SAMPLES
EVENT SELECTION AND BACKGROUND ANALYSIS
DETERMINATION OF THE BORN CROSS SECTION
SYSTEMATIC UNCERTAINTY
FIT TO THE LINE SHAPE
SUMMARY AND DISCUSSION

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