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Measurement of the production and elliptic flow of (anti)nuclei in Xe-Xe collisions at sqrt{s_(rm NN)} = 5.44 TeV

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arxiv 2405.19826 v2 pith:W2NHR6QV submitted 2024-05-30 nucl-ex hep-ex

Measurement of the production and elliptic flow of (anti)nuclei in Xe-Xe collisions at sqrt{s_(rm NN)} = 5.44 TeV

classification nucl-ex hep-ex
keywords anticollisionsmomentumtransversefunctionnucleinucleonproduction
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Measurements of (anti)deuteron and (anti)$^3$He production in the rapidity range $ |y| < $ 0.5 as a function of the transverse momentum and event multiplicity in Xe$-$Xe collisions at a center-of-mass energy per nucleon$-$nucleon pair of $\sqrt{s_{\rm NN}}$ = 5.44 TeV are presented. The coalescence parameters $B_2$ and $B_3$ are measured as a function of the transverse momentum per nucleon. The ratios between (anti)deuteron and (anti)$^3$He yields and those of (anti)protons and pions are reported as a function of the mean charged-particle multiplicity density, and compared with two implementations of the statistical hadronization model and with coalescence predictions. The elliptic flow of (anti)deuterons is measured for the first time in Xe$-$Xe collisions and shows features similar to those already observed in Pb$-$Pb collisions, i.e., the mass ordering at low transverse momentum and the meson$-$baryon grouping at intermediate transverse momentum. The production of nuclei is particularly sensitive to the chemical freeze-out temperature of the system created in the collision, which is extracted from a grand-canonical-ensemble-based thermal fit, performed for the first time including light nuclei along with light-flavor hadrons in Xe$-$Xe collisions. The extracted chemical freeze-out temperature $T_{\rm chem}$ = (154.2 $\pm$ 1.1) MeV in Xe$-$Xe collisions is similar to that observed in Pb$-$Pb collisions and close to the crossover temperature predicted by lattice quantum chromodynamics calculations.

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