English

Exploring the partonic collectivity in small systems at the LHC

Nuclear Theory 2024-01-03 v1 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

Using the Hydro-Coal-Frag model that combines hydrodynamics at low pTp_{\rm T}, quark coalescence at intermediate pTp_{\rm T}, and the LBT transport model at high pTp_{\rm T}, we study the spectra and elliptic flow of identified hadrons in high multiplicity p--Pb and p--p collisions at the Large Hadron Collider (LHC). In p--Pb collisions, the Hydro-Coal-Frag model gives a good description of the differential elliptic flow over the pTp_{\rm T} range from 0 to 6 GeV and the approximate number of constituent quark (NCQ) scaling at intermediate pTp_{\rm T}. Although Hydro-Coal-Frag model can also roughly describe the elliptic flow in high multiplicity p--p collisions with the quark coalescence process, the larger contribution from the string fragmentations leads to a notable violation of the NCQ scaling of v2v_2 at intermediate pTp_{\rm T} as observed in the experiment. Comparison runs of the Hydro-Frag model without the coalescence process demonstrate that regardless the parameter adjustments, the Hydro-Frag model cannot simultaneously describe the pTp_{\rm T} spectra and the elliptic flow of identified hadrons in either p--Pb collisions or p--p collisions. The calculations in this paper thus provide support for the existence of partonic degrees of freedom and the possible formation of the QGP in the small systems created at the LHC.

Keywords

Cite

@article{arxiv.2401.00913,
  title  = {Exploring the partonic collectivity in small systems at the LHC},
  author = {Yuanyuan Wang and Wenbin Zhao and Huichao Song},
  journal= {arXiv preprint arXiv:2401.00913},
  year   = {2024}
}

Comments

9 pages, 3 figures