会议论文详细信息
International Workshop on Discovery Physics at the LHC
Chiral symmetry restoration versus deconfinement in heavy-ion collisions at high baryon density
Bratkovskaya, E.L.^1,2 ; Palmese, A.^3 ; Cassing, W.^3 ; Seifert, E.^3 ; Steinert, T.^3 ; Moreau, P.^1
Institute for Theoretical Physics, University of Frankfurt, Frankfurt, Germany^1
GSI Helmholtzzentrum für Schwerionenforschung GmbH, Darmstadt, Germany^2
Institute for Theoretical Physics, University of Giessen, Giessen, Germany^3
关键词: Chiral symmetry restoration;    Excitation function;    Extract informations;    Heavy ion collision;    Heavy-ion collisions;    Nuclear equation of state;    Particle production;    Transverse mass spectra;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/878/1/012018/pdf
DOI  :  10.1088/1742-6596/878/1/012018
来源: IOP
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【 摘 要 】
The effect of the chiral symmetry restoration (CSR) on observables from heavyion collisions is studied in the energy range √ sNN=3-20 GeV within the Parton-Hadron- String Dynamics (PHSD) transport approach. The PHSD includes the deconfinement phase transition as well as essential aspects of CSR in the dense and hot hadronic medium, which are incorporated in the Schwinger mechanism for the hadronic particle production. We adopt different parametrizations of the nuclear equation of state from the non-linear σ - ω model, which enter in the computation of the quark scalar density for the CSR mechanism, in order to estimate the uncertainty in our calculations. For the pion-nucleon -term we adopt π≈ 45 MeV which corresponds to some 'world average'. Our systematic studies show that chiral symmetry restoration plays a crucial role in the description of heavy-ion collisions at √ sNN=3-20 GeV, realizing an increase of the hadronic particle production in the strangeness sector with respect to the non-strange one. We identify particle abundances and rapidity spectra to be suitable probes in order to extract information about CSR, while transverse mass spectra are less sensitive. Our results provide a microscopic explanation for the "horn" structure in the excitation function of the K+/π+ratio: the CSR in the hadronic phase produces the steep increase of this particle ratio up to √sNN ≈ 7 GeV, while the drop at higher energies is associated to the appearance of a deconfined partonic medium.
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