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Signatures of collective flow in high multiplicity pp collisions

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arxiv 1012.1517 v1 pith:YCR5YMRS submitted 2010-12-07 nucl-th nucl-ex

Signatures of collective flow in high multiplicity pp collisions

classification nucl-th nucl-ex
keywords flowblast-wavecollisionseffectsmultiplicitycollectivehighmodel
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A blast-wave parametrization, including a full set of hadronic resonances, is used to model a small system, with total particle multiplicity comparable to the one measured in the high-multiplicity pp collisions at the LHC. Calculations are preformed for three cases: with negligible, regular and strong radial flow on the blast-wave hypersurface. We investigate the effects of flow on inclusive p_T spectra as well as on 1D and 3D femtoscopic radii for pions. Special emphasis is put on the role of pions from resonance decays. In particular we show that they magnify the flow effects present in the blast-wave stage and significantly influence the shape of the correlation functions. A specific observable, the R^E_out/R^G_side ratio is proposed as a sensitive probe of the collective effects. Model results for the high multiplicity pp collisions, for scenarios with small and large radial flow are compared.

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  1. Revisiting the soft-hard separation in the transverse momentum spectra of $pp$ collisions

    hep-ph 2025-10 conditional novelty 4.0

    A Boltzmann fit to the low-pT ALICE spectra leaves a hard fragmentation residual with multiplicity-independent mean transverse momenta, supporting a two-component soft+hard description of pp collisions.