Title of article :
Antiproton-to-proton ratios for ALICE heavy-ion collisions
Author/Authors :
A. Tawfik، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2011
Pages :
10
From page :
63
To page :
72
Abstract :
Assuming that the final state of hadronization takes place along the freezeout line, which is defined by a constant entropy density, the antiproton-to-proton ratios produced in heavy-ion collisions are studied in framework of the hadron resonance gas (HRG) model. A phase transition from quark–gluon plasma to hadrons, a hadronization, has been conjectured in order to allow modifications in the phase-space volume and thus in the single-particle distribution function. Implementing both modifications in the grand-canonical partition function and taking into account the experimental acceptance in the heavy-ion collisions, the antiproton-to-proton ratios over center-of-mass energies image ranging from AGS to RHIC are very well reproduced by the HRG model. Comparing with the same particle ratios in pp collisions results in a gradually narrowing discrepancy with increasing image. At LHC energy, the ALICE antiproton-to-proton ratios in the pp collisions turn to be very well described by the HRG model as well. It is likely that the ALICE AA-program will produce the same antiproton-to-proton ratios as the pp-one. Furthermore, the ratio gets very close to unity indicating that the matter–antimatter asymmetry nearly vanishes. The chemical potential calculated at this energy strengthens the assumption of almost fully matter–antimatter symmetry up to the LHC energy.
Keywords :
Collective flow , statistical physics , Relativistic heavy-ion collisions , early universe
Journal title :
Nuclear physics A
Serial Year :
2011
Journal title :
Nuclear physics A
Record number :
1203822
Link To Document :
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