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Color field densities of the quark-antiquark excited flux tubes in SU(3) lattice QCD

机译:SU(3)晶格QCD中的夸克-反夸克激发通量管的色场密度

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We combine techniques previously utilized to study flux tube field density profiles and to study the excited spectrum of the gluonic fields produced by a static quark-antiquark pair. Working with pure gauge SU(3) fields discretized in a lattice, we utilize Wilson loops with a large basis of gluonic spacelike Wilson lines to include different excitations of the quark-antiquark flux tube. To increase the signal over noise ratio, we use the multihit technique in the temporal Wilson lines and the APE smearing in spatial Wilson lines. The number of gluonic operators combined with the space points where we compute the flux tube densities turns out to be very large, and we resort to GPUs and to CUDA codes. Computing the effective mass plot from the diagonalized correlation matrix, we separate the excitations with different two-dimensional angular momentum, parity, and radial quantum numbers. We then compute the color field density profiles for all the components of the colour electric and colour magnetic fields. We analyze our results for the first excitations of the flux tube and search for signals of novel phenomena beyond the Nambu-Goto string model, such as a longitudinal mode or an explicit gluon.
机译:我们结合以前用于研究通量管场密度分布和研究由静态夸克-反夸克对产生的胶子场的激发光谱的技术。与离散在晶格中的纯规范SU(3)场一起工作,我们利用具有大量胶态空间类Wilson线的Wilson环来包含夸克-反夸克通量管的不同激发。为了增加信噪比,我们在时间Wilson线中使用了多重碰撞技术,在空间Wilson线中使用了APE拖尾。胶合子运算符的数量加上我们计算通量管密度的空间点的数量非常大,因此我们使用GPU和CUDA代码。从对角相关矩阵计算有效质量图,我们将具有不同二维角动量,奇偶校验和径向量子数的激发分开。然后,我们计算彩色电场和彩色磁场的所有分量的色场密度分布。我们分析通量管首次激发的结果,并搜索Nambu-Goto弦模型之外的新颖现象的信号,例如纵向模式或显式胶子。

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