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QCD at finite isospin density: Chiral perturbation theory confronts lattice data

机译:QCD在有限的索波孔密度:手性扰动理论面对晶格数据

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We consider the thermodynamics of three-flavor QCD in the pion-condensed phase at nonzero isospin chemical potential (μI) and vanishing temperature using chiral perturbation theory in the isospin limit. The transition from the vacuum phase to a superfluid phase with a Bose-Einstein condensate of charged pions is shown to be second order and takes place atμI=mπ. We calculate the pressure, isospin density, and energy density to next-to-leading order in the low-energy expansion. Our results are compared with recent high-precision lattice simulations as well as previously obtained results in two-flavor chiral perturbation theory. The agreement between the lattice results and the predictions from three-flavor chiral perturbation theory is very good forμI<200MeV. For larger values ofμI, the agreement between lattice data and the two-flavor predictions is surprisingly good and better than with the three-flavor predictions. Finally, in the limitms?mu=md, we show that the three-flavor observables reduce to the two-flavor observables with renormalized parameters. The disagreement between the results for two-flavor and three-flavorχPT can largely be explained by the differences in the measured low-energy constants.
机译:我们考虑在非零IsoSpin化学电位(μI)的沟槽凝聚阶段中三种风味QCD的热力学,并在异源孔限制中使用手性扰动理论消失温度。从真空相到具有带电接头的Bose-Einstein冷凝物的真空相至超流相的转变被示出为二阶,并在μi=Mπ中进行。我们在低能量膨胀中计算压力,异位旋转密度和能量密度到下面的前导顺序。我们的结果与最近的高精度晶格模拟以及先前获得的两种风味手性扰动理论的结果进行了比较。格子结果与三种风味手术理论之间的预测之间的协议非常好,对于μi<200mev非常好。对于μi的较大值,格子数据与双味预测之间的协议令人惊讶的是,比三种味道预测更好。最后,在Limitms?Mu = MD中,我们表明三种风味可观察到通过重整化参数减少两种风味可观察。两种味道和三种味道的结果之间的分歧可以很大程度上通过测量的低能量常数的差异来解释。

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