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Functional renormalization group study of phonon mode effects on the chiral critical point

机译:功能重整化分组研究声子模式对手性临界点的影响

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We apply the functional renormalization group (FRG) equation to analyze the nature of the quantum chromodynamics (QCD) critical point beyond the mean-field approximation by taking into consideration the fact that the soft mode associated with the QCD critical point is a linear combination of fluctuations of the chiral condensate and the quark-number density, rather than pure chiral fluctuations. We first construct an extended quark-meson model, in which a new field φ corresponding to the quark-number density is introduced to the conventional one, composed of chiral fields (σ,π) and quarks. The fluctuations of the quark-number density as well as the chiral condensate are taken into account by solving the FRG equation, which contains σ and φ as coupled dynamical variables. It is found that mixing of the two dynamical variables causes a kind of level repulsion between the curvature masses, which in turn leads to an expansion of the critical region of the QCD critical point, depending on the coupling constants in the model yet to be determined from microscopic theories or, hopefully, by experiments.
机译:我们考虑到与QCD临界点相关的软模式是以下项的线性组合这一事实,应用函数重整化组(FRG)方程来分析超出平均场近似的量子色动力学(QCD)临界点的性质。手性冷凝物和夸克数密度的波动,而不是纯手性波动。我们首先构造一个扩展的夸克-介子模型,其中将与夸克数密度相对应的新场φ引入到由手性场(σ,π)和夸克组成的常规场中。通过求解FRG方程,考虑了夸克数密度和手性冷凝物的波动,该方程包含σ和φ作为耦合动力学变量。发现两个动力学变量的混合会导致曲率质量之间的一种水平排斥,进而导致QCD临界点的临界区域扩展,具体取决于尚待确定的模型中的耦合常数。从微观理论或希望通过实验。

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