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arXiv:1904.12938·v1·High Energy Physics — Phenomenology

Multiplicity dependence of strange and multi-strange hadrons in pp, pPb and PbPb collisions at LHC energies using Tsallis-Weibull Formalism

Pritam Chakraborty🇮🇳 · Tulika Tripathy🇮🇳 · Subhadip Pal🇮🇳 · Sadhana Dash🇮🇳

Abstract

The transverse momentum () distribution of strange hadrons ( and ) and multi-strange hadrons( and ) measured in pp, pPb, and PbPb collisions at LHC energies have been studied for different multiplicity classes using Tsallis-Weibull (or qWeibull)formalism. The distribution describes the measured spectra for all multiplicity (or centrality)classes. The multiplicity dependence of the extracted parameters are studied for the mentioned collisions systems. The parameter was observed to increase systematically with the collision multiplicity and follows a mass hierarchy for all collision system. This characteristic feature indicates that can be associated to the strength of collectivity for heavy ion collisions. It can also be related to strength of dynamic effects such as multi-partonic interactions and color reconnections which mimic collectivity in smaller systems. The non-extensive parameter is found to be greater than one for all the particles suggesting that the strange particles are emitted from a source which is not fully equilibrated.

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