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High transverse momentum eta meson production in p+p, d+Au and Au+Au collisions at sqrt(s_NN) = 200 GeV

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arxiv nucl-ex/0611006 v1 pith:IB5AIIJ5 submitted 2006-11-06 nucl-ex

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keywords collisionssqrtmesonsmomentumcollidingeta--gammahigh
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Inclusive transverse momentum spectra of eta mesons in the range p_T~2-12 GeV/c have been measured at mid-rapidity (|\eta| < 0,35) by the PHENIX experiment at RHIC in p+p, d+Au and Au+Au collisions at sqrt(s_NN) = 200 GeV. The eta mesons are reconstructed through their eta--> \gamma\gamma channel for the three colliding systems as well as through the eta-->pi^0 pi+ pi- decay mode in p+p and d+Au collisions. The nuclear modification factor in d+Au collisions, R_dAu(p_T~1.0-1.1, suggests at most only modest p_T broadening ("Cronin enhancement"). In central Au+Au reactions, the eta yields are significantly suppressed, with R_AuAu(pT)~0.2. The ratio of eta to pi^0 yields is approximately constant as a function of p_T for the three colliding systems in agreement with the high-p_T world average of R_eta/pi^0 \approx 0.5 in hadron-hadron, hadron-nucleus, and nucleus-nucleus collisions for a wide range of center-of-mass energies [sqrt(s_NN)~3-1800 GeV] as well as, for high scaled momentum x_p, in e+e- annihilations at sqrt(s)=91.2 GeV. These results are consistent with a scenario where high-p_T eta production in nuclear collisions at RHIC is largely unaffected by initial-state effects, but where light-quark mesons (pi^0;eta) are equally suppressed due to final-state interactions of the parent partons in the dense medium produced in Au+Au reactions.

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Cited by 2 Pith papers

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  1. Dynamics of Hot QCD Matter 2024 -- Hard Probes

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    Proceedings volume summarizing hard probe studies of quark-gluon plasma, with preliminary new results on non-Markovian quarkonium evolution, jet transport simulations, and machine learning taggers.

  2. Jet Quenching in Heavy-Ion Collisions at RHIC and the LHC experiments

    nucl-ex 2025-05 unverdicted

    A proceedings review of recent RHIC and LHC jet quenching results; no new data, derivations, or analysis are presented.

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