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Investigation of meson masses for real and imaginary chemical potential using the three-flavor PNJL model

机译:使用三味PNJL模型研究真实和虚化学势的介子质量

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摘要

We investigate chemical-potential (μ) and temperature (T) dependence of scalar and pseudo-scalar meson masses for both real and imaginary μ, using the Polyakov-loop extended Nambu-Jona-Lasinio (PNJL) model with three-flavor quarks. A three-flavor phase diagram is drawn in μ ~2 - T plane where positive (negative) μ ~2 corresponds to positive (imaginary) μ. A critical surface is plotted as a function of light- and strange-quark current mass and μ ~2. We show that μ-dependence of the six-quark Kobayashi-Maskawa-'t Hooft (KMT) determinant interaction originated in U _A (1) anomaly can be determined from lattice QCD data on η ′ meson mass around μ = 0 and μ = i π T / 3 with T slightly above the critical temperature at μ = 0 where the chiral symmetry is restored at μ = 0 but broken at μ = i π T / 3, if it is measured in future.
机译:我们研究了标量和伪标量介子质量对实μ和虚数的化学势(μ)和温度(T)依赖性,使用具有三味夸克的Polyakov环扩展Nambu-Jona-Lasinio(PNJL)模型。在 μ ~2 - T 平面上绘制三味相图,其中正(负)μ ~2 对应于正(虚)μ。临界曲面被绘制为光夸克和奇夸克电流质量和μ~2的函数。我们表明,起源于U _A(1)异常的六夸克Kobayashi-Maskawa-'t Hooft(KMT)行列式相互作用的μ依赖性可以从η′介子质量的晶格QCD数据中确定μ = 0和μ = i π T / 3,其中T略高于临界温度,μ μ = 0时手性对称性恢复,但在μ = i π T / 3时被破坏, 如果将来测量。

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