论文标题
高密度的手性相变的调节器方案依赖性
Regulator scheme dependence of the chiral phase transition at high densities
论文作者
论文摘要
有效低能QCD的最新功能重新归一化组研究的一个共同特征是,在低温下手性相变线的背弯行为以及对称状态中的负熵密度。在两种风味的夸克 - 梅森模型中分析了这种现象的调节器方案依赖性和有限密度的必要修改。三维或四维矩的三个不同调节剂的有限密度的流量相互遇到。发现背面行为和负熵密度可以追溯到调节剂形状函数的明确动量依赖性。虽然它持续使用通常使用的三维平面调节器,但它消失了Callan-Symanzik型调节器。这表明截短的伪像以衍生物扩展的最低顺序。给出了仔细的理论和数值探索。
A common feature of recent functional renormalization group investigations of effective low-energy QCD is the appearance of a back-bending behavior of the chiral phase transition line at low temperatures together with a negative entropy density in the symmetric regime. The regulator scheme dependence of this phenomenon and the necessary modifications at finite densities are analyzed within a two-flavor quark-meson model. The flows at finite densities for three different regulators of three- or four-dimensional momenta are confronted to each other. It is found that the back-bending behavior and the negative entropy density can be traced back to the explicit momentum dependence of the regulator shape function. While it persists for the often-used three-dimensional flat regulator, it vanishes for Callan-Symanzik type regulators. This points to truncation artifacts in the lowest order of the derivative expansion. A careful theoretical as well as numerical exploration is given.