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Evolution of antibaryon abundances in the early Universe and in heavy-ion collisions

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arxiv 1305.4046 v1 pith:BTO6H6KS submitted 2013-05-17 hep-ph

Evolution of antibaryon abundances in the early Universe and in heavy-ion collisions

classification hep-ph
keywords abundancesantiantibaryoncollisionsbaryonscalculationschemicalconclude
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study the kinetics of antibaryon production and annihilation in an expanding system, assuming that it is spatially homogeneous and chemically equilibrated at the initial stage. By solving simplified rate equations for (anti)baryon abundances we study the deviations from chemical equilibrium at late stages. The calculations are done for different expansion rates and net-baryon-to-entropy ratios, covering the conditions from early Universe to heavy-ion collisions. Our analysis includes both stable (anti)baryons and resonances. We conclude that residual antibaryon abundances are very sensitive to the time scales of expansion. Our calculations naturally explain noticeable deviations of antiproton-to-pion and proton-to-pion ratios observed in nuclear collisions at the LHC energy from the thermal model predictions. We conclude that at high bombarding energies the chemical freeze-out of (anti)baryons should occur at lower temperatures as compared to mesons.

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