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Relation between quark-antiquark potential and quark-antiquark free energy in hadronic matter

High Energy Physics - Phenomenology 2015-07-13 v2

Abstract

In the high-temperature quark-gluon plasma and its subsequent hadronic matter created in a high-energy nucleus-nucleus collision, the quark-antiquark potential depends on the temperature. The temperature-dependent potential is expected to be derived from the free energy obtained in lattice gauge theory calculations. This requires one to study the relation between the quark-antiquark potential and the quark-antiquark free energy. When the system's temperature is above the critical temperature, the potential of a heavy quark and a heavy antiquark almost equals the free energy, but the potential of a light quark and a light antiquark, of a heavy quark and a light antiquark and of a light quark and a heavy antiquark is substantially larger than the free energy. When the system's temperature is below the critical temperature, the quark-antiquark free energy can be taken as the quark-antiquark potential. This allows one to apply the quark-antiquark free energy to study hadron properties and hadron-hadron reactions in hadronic matter.

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Cite

@article{arxiv.1406.4934,
  title  = {Relation between quark-antiquark potential and quark-antiquark free energy in hadronic matter},
  author = {Zhen-Yu Shen and Xiao-Ming Xu},
  journal= {arXiv preprint arXiv:1406.4934},
  year   = {2015}
}

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11 pages