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首页> 外文期刊>Progress of Theoretical Physics >First-order quark-hadron phase-transition in a NJL-type model for nuclear and quark matter the case of symmetric nuclear matter
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First-order quark-hadron phase-transition in a NJL-type model for nuclear and quark matter the case of symmetric nuclear matter

机译:NJL型核和夸克物质模型中的一阶夸克-强子相变(在对称核物质的情况下)

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摘要

The quark-hadron phase transition at finite baryon chemical potential is investigated in the extended Nambu-Jona-Lasinio model in which the scalar-vector eight-point interaction is included holding the chiral symmetry. By comparing the pressure of the symmetric nuclear matter with that of the quark matter, the realized phase at given baryon density is determined. As a result, the first order quark-hadron phase transition is derived where the deconfinement transition occurs after the chiral symmetry restoration in this model.
机译:在扩展的Nambu-Jona-Lasinio模型中研究了在有限重子化学势下的夸克-强子相变,在该模型中,标量-矢量八点相互作用被保持为手性对称。通过比较对称核物质和夸克物质的压力,可以确定给定重子密度下的已实现相位。结果,在该模型中,在手性对称还原后发生脱限转变的情况下,推导了第一级夸克-强子相变。

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