The role of the thermal $f_0(500)$ or sigma in chiral symmetry restoration

A. Vioque-Rodr'iguez, A. G. Nicola
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引用次数: 0

Abstract

We analyze the $f_0(500)$ state generated as a pole of $\pi\pi$ scattering within unitarized low-energy effective theories at finite temperature. First, we report on the $\sigma$ self-energy in the LSM, which is used as a benchmark in order to test the hypotheses carried out. The relation of that thermal pole with the scalar susceptibility is studied within a scalar saturation approach, which yields results complying with lattice data. The robustness and predictability of this method are studied in terms of the low-energy constants involved and the unitarization method. Our analysis highlights the importance of this thermal state to describe the main qualitative features of the scalar susceptibility around the chiral transition.
热$f_0(500)$或σ在手性对称恢复中的作用
我们分析了在有限温度下,统一低能有效理论中$\pi\pi$散射极点产生的$f_0(500)$态。首先,我们报告了LSM中的$\sigma$自能,它被用作基准,以检验所进行的假设。用标量饱和方法研究了该热极与标量磁化率的关系,得到了符合晶格数据的结果。从所涉及的低能常数和统一方法两方面研究了该方法的鲁棒性和可预测性。我们的分析强调了这种热态对于描述手性跃迁周围的标量磁化率的主要定性特征的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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