bottomonium suppression in nucleus-nucleus collisions using effective fugacity quasi-particle model
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ID: 150512
2018
We have studied the equation of state and dissociation temperature of bottomonium state by correcting the full Cornell potential in isotropic medium by employing the effective fugacity quasi-particle Debye mass. We had also calculated the bottomonium suppression in an expanding, dissipative strongly interacting QGP medium produced in relativistic heavy-ion collisions. Finally we compared our results with experimental data from RHIC 200GeV/nucleon Au-Au collisions, LHC 2.76 TeV/nucleon Pb-Pb, and LHC 5.02 TeV/nucleon Pb-Pb collisions as a function of number of participants.
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nilima2018advancesbottomonium
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Authors | ;Indrani Nilima;Vineet Kumar Agotiya |
Journal | biotechnology reports (amsterdam, netherlands) |
Year | 2018 |
DOI | 10.1155/2018/8965413 |
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