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首页> 外文期刊>International Journal of Modern Physics, A. Particles and Fields, Gravitation, Cosmology >Chiral symmetry transition in the linear sigma model with quarks: Counting effective QCD degrees of freedom from low to high temperature
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Chiral symmetry transition in the linear sigma model with quarks: Counting effective QCD degrees of freedom from low to high temperature

机译:带有夸克的线性sigma模型中的手征对称跃迁:计算从低温到高温的有效QCD自由度

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We use the linear sigma model coupled to quarks, together with a plausible location of the critical end point (CEP), to study the chiral symmetry transition in the QCD phase diagram. We compute the effective potential at finite temperature and density up to the contribution of the ring diagrams, both in the low and high temperature limits, and use it to compute the pressure and the position of the CEP. In the high temperature regime, by comparing to results from extrapolated lattice data, we determine the model coupling constants. Demanding that the CEP remains in the same location when described in the high temperature limit, we determine again the couplings and the pressure for the low temperature regime. We show that this procedure gives an average description of the lattice QCD results for the pressure and that the change from the low to the high temperature domains in this quantity can be attributed to the change in the coupling constants which in turn we link to the change in the effective degrees of freedom.
机译:我们使用耦合到夸克的线性sigma模型,以及临界终点(CEP)的合理位置,来研究QCD相图中的手性对称跃迁。我们计算出在有限的温度和密度下的有效电势,直至在低温和高温极限下的环状图所起的作用,然后使用它来计算CEP的压力和位置。在高温条件下,通过与外推晶格数据的结果进行比较,我们确定了模型耦合常数。当在高温极限条件下描述时,要求CEP保持在同一位置,我们再次确定低温条件下的耦合和压力。我们表明,该过程给出了压力的点阵QCD结果的平均描述,并且从该量的低温域到高温域的变化可以归因于耦合常数的变化,而耦合常数又与变化相关联。在有效的自由度上。

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