6–12 Apr 2025
Goethe University Frankfurt, Campus Westend, Theodor-W.-Adorno-Platz 1, 60629 Frankfurt am Main, Germany
Europe/Berlin timezone

Measurements of inclusive J/$\psi$ and $\psi$(2S) production at midrapidity in pp collisions at $\sqrt{s}$ = 13.6 TeV with ALICE

Not scheduled
20m
Goethe University Frankfurt, Campus Westend, Theodor-W.-Adorno-Platz 1, 60629 Frankfurt am Main, Germany

Goethe University Frankfurt, Campus Westend, Theodor-W.-Adorno-Platz 1, 60629 Frankfurt am Main, Germany

Poster Heavy flavor & quarkonia Poster session 2

Speaker

Yuan Zhang (University of Science and Technology of China (CN))

Description

Quarkonium production in high-energy proton-proton (pp) collisions is an important tool for studying perturbative and non-perturbative aspects of quantum chromodynamics (QCD). Charmonia are bound states of charm and anti-charm quarks and their production process can be factorized into two stages: the heavy quark production and the formation of the bound state. The former happens within initial hard parton-parton scatterings with large momentum transfers, and can be well described by perturbative QCD. The second one, which involves long distances and soft momentum scales, is a typical non-perturbative process. Measurements of J/$\psi$ and $\psi$(2S) cross section in pp collisions are crucial for studying charmonium production mechanisms and testing different QCD-based model calculations. They can also provide a reference for investigating the quark-gluon plasma formed in nucleus-nucleus collisions and the cold nuclear matter effects in proton-nucleus collisions.

In this poster, the results of inclusive J/$\psi$ production cross section as well as the $\psi$(2S)-to-J/$\psi$ ratios as functions of $p_{\rm T}$ and multiplicity at midrapidity ($|y|<0.9$) in pp collisions at the center-of-mass energy of $\sqrt{s}$ = 13.6 TeV will be shown. The analysis is based on the data collected by the upgraded ALICE detector during LHC Run 3, which offers significantly higher statistics compared to Run 1 and 2.

Category Experiment
Collaboration (if applicable) ALICE Collaboration

Author

Yuan Zhang (University of Science and Technology of China (CN))

Presentation materials