SearcharxivSearch

arXiv subjects

Xining Wang

Publications and source records attributed to Xining Wang.

3 recordsLinked to original sources

From a Long-standing Prediction to a New Family of Hadrons

Fully charmed tetraquarks have evolved from a long-standing theoretical prediction into one of the most active frontiers in hadron spectroscopy. This article reviews their development from early theoretical studies and experimental searches to the recent breakthroughs at the Large Hadron Collider, with particular emphasis on the contributions of the Nanjing Normal University (NNU) and Tsinghua University (THU) teams at the CMS experiment. We summarize the discovery of the fully charmed tetraquark family, the establishment of interference among resonances, and the first determination of their quantum numbers. These advances have transformed the search for a single exotic resonance into the study of a new family of hadrons and opened a promising avenue for exploring the nonperturbative dynamics of Quantum Chromodynamics.

hep-ex

Experimental road of the $J/\psi\phi$ mass spectrum, current status, and implications

Inspired by the $X(4140)$ structure reported in the $J/\psi \phi$ system by the CDF experiment in 2009, a series of searches have been carried out in the $J/\psi \phi$ and $J/\psi K$ channels, leading to the claim of ten structures in the $B \rightarrow J/\psi \phi K$ system. This article provides a comprehensive review of experimental developments, from the initial evidence of $X(4140)$ at CDF to the amplitude analyses and diffractive process investigations by the LHCb experiment, as well as theoretical interpretations of these states. A triplet of $J^{PC} = 1^{++}$ states with relatively large mass splittings [about 200~MeV (natural units are adopted)] has been identified in the $J/\psi \phi$ system by LHCb. Their mass-squared values align approximately linearly with a possible radial quantum number, suggesting that the triplet may represent a radially excited family. For $X(4140)$, the first state in the triplet, its width reported by LHCb is inconsistent with that measured by other experiments, and possible reasons for this discrepancy are discussed. A potential connection between an excess at 4.35~GeV in the $J/\psi \phi$ mass spectrum reported by the Belle experiment through a two-photon process and a potential spin-2 excess in the LHCb data is also investigated. In addition, potential parallels between the $J/\psi \phi$ and $J/\psi J/\psi$ systems, both composed of two vector mesons, are discussed. The continued interest in, and complexity of, these systems underscore the necessity of further experimental exploration with increased statistical precision across a variety of experiments, particularly those with relatively flat efficiency across the Dalitz plot. The $J/\psi \omega$, $\phi \phi$, $\rho \omega$, and $\rho \phi$ systems are mentioned, and the prospects for the $J/\psi \Upsilon$ and $\Upsilon \Upsilon$ systems, are also highlighted.

hep-ex

New Structures in the $J/\psi$ $J/\psi$ Mass Spectrum at CMS

A search is reported for structures near the $J/\psi$ $J/\psi$ mass threshold using a dataset of proton-proton collisions at $\sqrt{s} \: =13 \: \mathrm{TeV} $ recorded with the CMS detector at the LHC, corresponding to an integrated luminosity of about $135 \: \mathrm{fb^{-1}}$. Two structures are observed with a significance exceeding $5\sigma$ and evidence of an additional structure is reported with a local significance of $4.7\sigma$.

hep-ex