Speaker
Description
In the present work we have investigated the properties of the heavy quarkonia in the presence of finite baryonic chemical potential and momentum anisotropy by using the quasi-particle approach. The effect of the finite baryonic chemical potential has been incorporated through the quasi-particle Debye mass, and momentum anisotropy is used to examine the binding energies of the quarkonium states. We have also calculated the thermal width of the quarkonium states from the imaginary part of the potential and found that the thermal width is decreases with momentum anisotropy. The dissociation baryonic chemical potential of the states of quarkonia have been calculated with the help of thermal width in the presence of temperature and momentum anisotropy. The effect of the temperature and momentum anisotropy on the mass spectra with finite baryonic chemical potential of the quarkonium states has also been studied.
Session | Heavy Ions and QCD |
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