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Hadronic SU(3) parity doublet model for dense matter and its extension to quarks and the strange equation of state

机译:稠密物质的Hadronic SU(3)奇偶对偶模型及其扩展至夸克和奇异状态方程

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摘要

A chiral model is introduced that is based on the parity doublet formulation of chiral symmetry including hyperonic degrees of freedom. The phase structure of the model is determined. Depending on the masses of the chiral partners, the transition to the chirally restored phase shows a first-order line with critical end points as a function of chemical potential and temperature in additional to the standard liquid-gas phase transition of self-bound nuclear matter. We extend the parity doublet model to describe the deconfinement phase transition which is in quantitative agreement with lattice data at μB=0. The phase diagram of the model is presented which shows a decoupling of chiral symmetry restoration and deconfinement. Loosening the constraint of strangeness conservation, we also investigate the phase diagram at net strangeness density. We calculate the strangeness per baryon fraction and the baryon-strangeness correlation factor, two quantities that are sensitive on deconfinement and that can be used to interpret lattice calculations.
机译:介绍了一种手性模型,该模型基于手性对称性的奇偶对偶公式,包括高超自由度。确定了模型的相结构。取决于手性伙伴的质量,除自结合核物质的标准液相-气相转变外,向手性还原相的转变还显示出一阶线,该线具有临界终点,该临界点是化学势和温度的函数。我们扩展了奇偶校验对偶模型来描述解除约束的相变,该约束与μB= 0处的晶格数据定量一致。给出了模型的相图,该图显示了手性对称性恢复和限制作用的解耦。放松了对奇异性守恒的约束,我们还研究了净奇异性密度下的相图。我们计算每个重子分数的奇数和重子-奇异度相关因子,这两个对脱位敏感的量可以用来解释晶格计算。

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  • 来源
    《Physical Review C: Nuclear Physics》 |2011年第4期|1-11|共11页
  • 作者单位

    Institut für Theoretische Physik Goethe-Universität Max-von-Laue-Str. 1 D-60438 Frankfurt am Main Germany;

    FIAS Johann Wolfgang Goethe University Frankfurt am Main Germany;

    Institut für Theoretische Physik Goethe-Universität Max-von-Laue-Str. 1 D-60438 Frankfurt am Main GermanyFrankfurt Institute for Advanced Studies (FIAS) Ruth-Moufang-Str. 1 D-60438 Frankfurt am Main GermanyGSI Helmholtzzentrum für Schwerionenforschung GmbH Planckstr. 1 D-64291 Darmstadt Germany;

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