Di-hadron and Tri-hadron correlation and Mach-like cone structure in AMPT model
نویسنده
چکیده
In a framework of a multi-phase transport model with both partonic and hadronic interactions, azimuthal correlations between trigger particles and associated scattering particles in Au + Au collisions at √ sNN = 200 GeV/c have been studied by the mixing-event technique. The Mach-like structure has been observed in correlation function for central collisions. It is shown that the Mach-like structure is basically born in the partonic process and further developed in hadronic rescattering process. However, hadronic rescattering alone cannot reproduce the amplitude of Mach-like cone on away side, therefore partonic cascade process is necessary to describe the amplitude of Mach-like cone on away side in experiment. In addition, three-particle correlations have been investigated in central Au + Au collisions with the AMPT model, and the results support the conclusion that partonic cascade processes enhance the opening angle of Mach-like cone structures.
منابع مشابه
Di-hadron azimuthal correlation and Mach-like cone structure in a parton/hadron transport model
In the framework of a multi-phase transport model (AMPT) with both partonic and hadronic interactions, azimuthal correlations between trigger particles and associated scattering particles have been studied by the mixing-event technique. The momentum ranges of these particles are 3 < p T < 6 GeV/c and 0.15 < p assoc T < 3 GeV/c (soft), or 2.5 < p trig T < 4 GeV/c and 1 < p T < 2.5 GeV/c (hard) i...
متن کاملDi-hadron azimuthal correlation and Mach-like cone structure in parton/hadron transport model
In a framework of a multi-phase transport model with both partonic and hadronic interactions, azimuthal correlations between trigger particles and associated scattering particles (3 < p T < 6 GeV/c and 0.15 < p T < 3 GeV/c (soft), or 2.5 < p trig T < 4 GeV/c and 1 < p assoc T < 2.5 GeV/c (hard)) in Au + Au collisions at √ sNN = 200 GeV have been studied by the mixing-event technique, and Mach-l...
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