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Long- and short-range correlations and their event-scale dependence in high-multiplicity pp collisions at $\boldsymbol{\sqrt{{\textit s}}}=13$ TeV

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arxiv 2101.03110 v2 pith:XQQPKRTH submitted 2021-01-08 nucl-ex hep-ex

classification nucl-exhep-ex
keywords deltaevent-scalelong-rangemathrmcalculationscollisionscorrelationsdependence
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Two-particle angular correlations are measured in high-multiplicity proton-proton collisions at $\sqrt{s} =13$ TeV by the ALICE Collaboration. The yields of particle pairs at short-($\Delta\eta$ $\sim$ 0) and long-range ($1.6 < |\Delta\eta| < 1.8$) in pseudorapidity are extracted on the near-side ($\Delta\varphi$ $\sim$ 0). They are reported as a function of transverse momentum ($p_{\mathrm T}$) in the range $1 <p_{\mathrm T}< 4$ GeV/$c$. Furthermore, the event-scale dependence is studied for the first time by requiring the presence of high-$p_{\rm T}$ leading particles and jets for varying $p_{\rm T}$ thresholds. The results demonstrate that the long-range "ridge" yield, possibly related to the collective behavior of the system, is present in events with high-$p_{\mathrm T}$ processes. The magnitudes of the short- and long-range yields are found to grow with the event scale. The results are compared to EPOS LHC and PYTHIA 8 calculations, with and without string-shoving interactions. It is found that while both models describe the qualitative trends in the data, calculations from EPOS LHC show a better quantitative agreement, in particular for the $p_{\rm T}$ and event-scale dependencies.

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  1. Analysis of the near-side ridge structure in pp collisions via Momentum-Kick Model

    hep-ph 2024-11 conditional novelty 4.0 of 10

    The Momentum-Kick Model can fit the near-side ridge in high-multiplicity pp collisions at 13 and 7 TeV, with multiplicity-dependent parameters and a speculative 14 TeV prediction.

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