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Smallest drop of QGP: Thermodynamic properties in p-Pb collisions

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arxiv 2212.11710 v2 pith:LIF66H4X submitted 2022-12-22 nucl-th hep-ph

Smallest drop of QGP: Thermodynamic properties in p-Pb collisions

classification nucl-th hep-ph
keywords collisionsp-pbformationchromodynamicsexperimentalmatterphaseplasma
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The extreme conditions of temperature and density produced in ultrarelativistic collisions of heavy nuclei facilitate the formation of the most fundamental fluid in the universe, the deconfined phase of Quantum Chromodynamics called quark-gluon plasma. Despite the extensive experimental evidence collected over the past decade of its production in colliding systems such as Au-Au and Pb-Pb, establishing quark-gluon plasma formation in the collision of smaller systems, such as p-Pb, remains an open question. In this study, we describe the evolution of matter formed in p-Pb collisions at 5.02 TeV using a state-of-the-art hybrid model based on viscous relativistic hydrodynamics. We investigate the thermodynamic properties of the medium and final state observables. Our findings are compared with experimental data and first-principles calculations derived from lattice quantum chromodynamics. The results support the formation of a collective phase of strongly interacting matter in high-multiplicity p-Pb collisions.

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