Cucchieri A, Mendes T
Instituto de Física de São Carlos, Universidade de São Paulo, Caixa Postal 369, 13560-970 São Carlos, SP, Brazil.
Phys Rev Lett. 2008 Jun 20;100(24):241601. doi: 10.1103/PhysRevLett.100.241601. Epub 2008 Jun 18.
We present rigorous upper and lower bounds for the zero-momentum gluon propagator D(0) of Yang-Mills theories in terms of the average value of the gluon field. This allows us to perform a controlled extrapolation of lattice data to infinite volume, showing that the infrared limit of the Landau-gauge gluon propagator in SU(2) gauge theory is finite and nonzero in three and in four space-time dimensions. In the two-dimensional case, we find D(0)=0, in agreement with Maas. We suggest an explanation for these results. We note that our discussion is general, although we apply our analysis only to pure gauge theory in the Landau gauge. Simulations have been performed on the IBM supercomputer at the University of São Paulo.
我们根据胶子场的平均值,给出了杨-米尔斯理论中零动量胶子传播子(D(0))严格的上下界。这使我们能够对格点数据进行可控的无限体积外推,结果表明,在三维和四维时空维度中,(SU(2))规范理论中朗道规范胶子传播子的红外极限是有限且非零的。在二维情况下,我们发现(D(0)=0),这与马斯的结果一致。我们对这些结果提出了一种解释。我们注意到,尽管我们仅将分析应用于朗道规范下的纯规范理论,但我们的讨论具有普遍性。模拟是在圣保罗大学的IBM超级计算机上进行的。