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arXiv:2110.03977·v2·High Energy Physics — Phenomenology

Extension of Glauber-like model for Proton-Proton collisions using anisotropic and inhomogeneous density profile

Suman Deb🇮🇳 · Golam Sarwar🇮🇳 · Dhananjaya Thakur🇮🇳 · Pavish S.🇩🇪 · Raghunath Sahoo🇮🇳 · Jan-e Alam🇮🇳

Abstract

Results from proton-proton () collisions have routinely been used as a baseline to analyze and understand the production of QCD matter expected to be produced in nuclear collisions. But recent studies of small systems formed in collisions at the LHC energies hint at the possibility of producing medium with collective behavior. Therefore, results from collisions required more careful investigation to understand whether QCD matter is produced in high multiplicity collisions. With this motivation, the Glauber model traditionally used to study the heavy-ion collision dynamics at high energy is applied here to understand the dynamics of collisions. We have used anisotropic and inhomogeneous quark/gluon-based proton density profile, a realistic picture obtained from deep inelastic scattering results and this model explains the charged particle multiplicity distribution of collisions at LHC energies very well. Collision geometric properties like impact parameter and mean number of binary collisions (), mean number of participants () at different multiplicities are determined for collisions. We further used these collision geometric properties to estimate average charged-particle pseudorapidity density () and found it to be comparable with the experimental results. Knowing , we have obtained nuclear modification-like factor () in collisions which has not been done before to the best of our knowledge.

Comments: Presented in LHCP-2021. To appear as PoS. Slightly modified version with corrected references

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