Abstract

We report the first results of elliptic ($v_2$), triangular ($v_3$) and quadrangular flow ($v_4$) of charged particles in Pb-Pb collisions at $\sqrt{s_{\rm NN}}=5.02$ TeV with the ALICE detector at the CERN Large Hadron Collider. The measurements are performed in the central pseudorapidity region $|\eta|<0.8$ and for the transverse momentum range $0.2<p_{\rm T}<5$ GeV/$c$. The anisotropic flow is measured using two-particle correlations with a pseudorapidity gap greater than one unit and with the multi-particle cumulant method. Compared to results from Pb-Pb collisions at $\sqrt{s_{\rm NN}}=2.76$ TeV, the anisotropic flow coefficients $v_{2}$, $v_{3}$ and $v_{4}$ are found to increase by ($3.0\pm0.6$)%, ($4.3\pm1.4$)% and ($10.2\pm3.8$)%, respectively, in the centrality range 0-50%. This increase can be attributed mostly to an increase of the average transverse momentum between the two energies. The measurements are found to be compatible with hydrodynamic model calculations. This comparison provides a unique opportunity to test the validity of the hydrodynamic picture and the power to further discriminate between various possibilities for the temperature dependence of shear viscosity to entropy density ratio of the produced matter in heavy-ion collisions at the highest energies.

Highlights

  • WPbe-Prebpocrotlltihseiofnirsstartesaucltesnotefre-lolfip-mticas(sv2e)n, etrrigayngpuelrarn(uvc3l)e,oanndpaqiuraodfrapngffisffiuffiNffiffilNffiaffi r1⁄4(v54.)0f2loTweoVf charged particles with the ALICE detector at the CERN Large Hadron Collider

  • This comparison provides a unique opportunity to test the validity of the hydrodynamic picture and the power to further discriminate between various possibilities for the temperature dependence of shear viscosity to entropy density ratio of the produced matter in heavy-ion collisions at the highest energies

  • The transition from normal nuclear matter to the quark-gluon plasma (QGP) state is expected to occur at extreme values of energy density (0.2–0.5 GeV=fm3, according to lattice quantum chromodynamics calculations [1,2]), which are accessible in ultrarelativistic heavy-ion collisions at the Large Hadron Collider (LHC) [3,4]

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Summary

Introduction

WPbe-Prebpocrotlltihseiofnirsstartesaucltesnotefre-lolfip-mticas(sv2e)n, etrrigayngpuelrarn(uvc3l)e,oanndpaqiuraodfrapngffisffiuffiNffiffilNffiaffi r1⁄4(v54.)0f2loTweoVf charged particles with the ALICE detector at the CERN Large Hadron Collider. Compared to results anisotropic flow coefficients v2, v3, and v4 are found to from Pb-Pb collisions at increase by ð3.0 Æ 0.6Þ%, ð4.3 Æ 1.4Þ%, and ð10.2 Æ 3.8Þ%, respectively, in the centrality range 0%–50%.

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