Systematic sensitivity study of the $J/\psi$ nuclear modification factor to polarization assumptions
Yi Yang, Chun-Wei Su, Te-Chuan Huang

TL;DR
This study systematically assesses how assumptions about $J/eta$ polarization affect the measurement of its nuclear modification factor, revealing significant uncertainties that impact understanding of quarkonium behavior in Quark-Gluon Plasma.
Contribution
It provides a comprehensive evaluation of the systematic uncertainties in $R_{AA}$ due to polarization assumptions across different experiments and energies.
Findings
Polarization assumptions significantly influence $R_{AA}$ measurements.
Unpolarized assumption introduces dominant systematic uncertainties.
Precise polarization measurements are essential for accurate QGP studies.
Abstract
Heavy quarkonium is one of the key candidates to study the fundamental properties of Quark-Gluon Plasma (QGP) created in heavy-ion (+) collisions. Comparing the production of the meson in proton+proton (+) and + collisions, namely the nuclear modification factor (), provides the quantitative understanding of the QGP. Normally, the is measured under the assumption that the quarkonium is unpolarized. However, recent measurements on the polarization in the forward rapidity region from the LHC experiments suggest that the meson has a small but non-negligible polarization. In this paper, we evaluate the systematic sensitivity of the kinematic acceptance to the polarization assumptions in the measurement of . Using available data from the ALICE and LHCb experiments in the forward rapidity region, and…
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Taxonomy
TopicsHigh-Energy Particle Collisions Research · Quantum Chromodynamics and Particle Interactions · Particle physics theoretical and experimental studies
