Two-particle correlations on transverse rapidity in Au+Au collisions at $\sqrt{s_{\rm NN}}=200$ GeV at STAR
STAR Collaboration: M. S. Abdallah, B. E. Aboona, J. Adam, L., Adamczyk, J. R. Adams, J. K. Adkins, G. Agakishiev, I. Aggarwal, M. M., Aggarwal, Z. Ahammed, A. Aitbaev, I. Alekseev, D. M. Anderson, A. Aparin, E., C. Aschenauer, M. U. Ashraf, F. G. Atetalla, G. S. Averichev

TL;DR
This study analyzes two-particle correlations in transverse rapidity in Au+Au collisions at 200 GeV to explore the properties of the QCD medium, revealing significant medium effects in central collisions.
Contribution
It introduces a detailed 2D correlation analysis in transverse rapidity for Au+Au collisions, highlighting the evolution of correlation structures with collision centrality.
Findings
Correlation structures evolve smoothly with centrality.
Peripheral collisions resemble superpositions of nucleon collisions.
Strong medium effects are observed in central collisions.
Abstract
Two-particle correlation measurements projected onto two-dimensional, transverse rapidity coordinates (), allow access to dynamical properties of the QCD medium produced in relativistic heavy-ion collisions that angular correlation measurements are not sensitive to. We report non-identified charged-particle correlations for Au + Au minimum-bias collisions at = 200 GeV taken by the STAR experiment at the Relativistic Heavy-Ion Collider (RHIC). Correlations are presented as 2D functions of transverse rapidity for like-sign, unlike-sign and all charged-particle pairs, as well as for particle pairs whose relative azimuthal angles lie on the near-side, the away-side, or at all relative azimuth. The correlations are constructed using charged particles with transverse momentum GeV/, pseudorapidity from 1 to 1, and azimuthal angles from…
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Taxonomy
TopicsHigh-Energy Particle Collisions Research · Quantum Chromodynamics and Particle Interactions · Statistical Methods and Bayesian Inference
