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Quark deconfinement phase transition in nuclear matter for improved quark mass density-dependent model

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arxiv 1207.0072 v1 pith:3C72Y7J2 submitted 2012-06-30 nucl-th

classification nucl-th
keywords matternuclearquarkfinitemodelphasedeconfinementproperties
verification ladder T0 review T1 audit T2 compute T3 formal
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The improved quark mass density-dependent (IQMDD) model, which has been successfully used to describe the properties of both infinite nuclear matter and finite nuclei, is applied to investigate the properties of quark deconfinement phase transition. By using the finite-temperature quantum field theory, we calculate the finite temperature effective potential and extend the IQMDD model to finite temperature and finite nuclear matter density. The critical temperature and the critical density of nuclear matter are given and the QCD phase diagram is addressed. It is shown that this model can not only describe the saturation properties of nuclear matter, but also explain the quark deconfinement phase transition successfully.

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