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Effect of event selection on jetlike correlation measurement in d+Au collisions at sqrt{s_{rm{NN}}}=200 GeV
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arxiv 1412.8437 v2 pith:X7UXR3G2 submitted 2014-12-29 nucl-ex nucl-th
Effect of event selection on jetlike correlation measurement in d+Au collisions at sqrt{s_{rm{NN}}}=200 GeV
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Dihadron correlations are analyzed in $\sqrt{s_{_{\rm NN}}} = 200$ GeV $d$+Au collisions classified by forward charged particle multiplicity and zero-degree neutral energy in the Au-beam direction. It is found that the jetlike correlated yield increases with the event multiplicity. After taking into account this dependence, the non-jet contribution on the away side is minimal, leaving little room for a back-to-back ridge in these collisions.
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Cited by 3 Pith papers
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Measurement of jet quenching in O+O collisions at $\sqrt{s_\mathrm{NN}}=200$ GeV by the STAR experiment at RHIC
nucl-ex 2026-04 unverdicted novelty 6.0
STAR reports 20% suppression of recoiling hadrons and jets in high-event-activity O+O collisions at 200 GeV, with a measured 0.7 GeV/c pT shift for large-radius jets, providing evidence for jet quenching in small systems.
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Geometric Bias and Centrality Dependence of Jet Quenching in High-Energy Nuclear Collisions
nucl-th 2026-04 unverdicted novelty 5.0
A refined HIJING initial-condition model with geometric bias from impact-parameter effects, combined with Boltzmann jet transport, describes the centrality dependence of charged-hadron suppression in 5.02 TeV Pb+Pb co...
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Geometric Bias and Centrality Dependence of Jet Quenching in High-Energy Nuclear Collisions
nucl-th 2026-04 conditional novelty 5.0
Suppression of high-pT hadrons in peripheral Pb+Pb collisions is predominantly driven by initial-state geometric bias rather than final-state jet quenching.
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