4.6 Article

Quarkonium production in p plus p collisions at RHIC and LHC

期刊

PHYSICA SCRIPTA
卷 97, 期 6, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/1402-4896/ac6d1d

关键词

Quarkonium; quarkonium production mechanism; charmonium; bottomonium

资金

  1. European Regional Development Fund-Project 'Center of Advanced Applied Science' [CZ.02.1.01/0.0/0.0/16-019/0000778, LTT18002]
  2. Ministry of Education, Youth and Sports of the Czech Republic

向作者/读者索取更多资源

This paper provides an overview of recent quarkonium production studies at RHIC and LHC, presenting experimental results and model calculations. The production mechanism of quarkonium remains unresolved, and further research and data are needed to understand it.
Quarkonium production mechanism is still an unresolved question. This paper provides an overview of recent quarkonium production studies performed at RHIC and LHC in p + p collisions at a wide range of collision energies. After a brief explanation of representative theoretical models, experimental results of the quarkonium spectra and polarizations are presented with comparison to the model calculations. The spectra are overall rather well described by production model calculations, with a few exceptions, while no significant polarization is observed beyond large uncertainties for J/psi and and thus no constraint on the models is obtained at present. Recently, new observables have been measured such as charged particle multiplicity dependence of quarkonium production, which provides a way to understand the interplay between hard and soft processes, and associated production of quarkonium (J/psi in jets and double production), which provides more information about production mechanism. A trend of non-linear increase of quarkonium production with increasing the particle multiplicity is observed both at RHIC and LHC, but it is reproduced by most models and further studies and more data are needed in order to differentiate them. Meanwhile, the first measurements of J/psi in jets show that it is produced with larger activity within a jet than simulated by PYTHIA. A comment on the study of J/psi-hadron femtoscopic correlations to measure their mutual interaction is also given. In summary, the production mechanism remains a puzzle, but more precise studies will be possible with upcoming RHIC and LHC runs.

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