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Model investigation on the mechanism of QGP formation in relativistic heavy ion collisions
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作者 邓胜华 李家荣 《Science China Mathematics》 SCIE 1995年第5期570-580,共11页
On the basis of the nontopological soliton bag model, it is proposed that the quark decon-finement may be indicated by the unstability and disappearance of solition solutions at finite-temperature and finite-density. ... On the basis of the nontopological soliton bag model, it is proposed that the quark decon-finement may be indicated by the unstability and disappearance of solition solutions at finite-temperature and finite-density. The thermal effects on the vacuum structure of strongly interacting matter are investigated, and the soliton field equation of the model is solved directly in the whole range of temperature via a numerical method. The phase structure of the system and the features of deconfining phase transition are analysed in detail. In addition, the collective excitations in the vacuum caused by thermal effects are investigated by making use of an order parameter which is given to describe the vacuum condensation at finite temperature. A physical mechanism and an intuitive picture are presented for the formation of QGP from both deconfined hardon matter and the vacuum excitation in relativistic heavy ion collisions. 展开更多
关键词 QUARK GLUON plasma RELATIVISTIC heavy ion collision deconfinenient phase transition vacuum CONDENSATION nontopological solition model.
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