1997
DOI: 10.1016/s0550-3213(97)00629-9
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Gribov copies in the minimal Landau gauge: The influence on gluon and ghost propagators

Abstract: We study the influence of Gribov copies on gluon and ghost propagators, evaluated numerically in pure SU (2) lattice gauge theory in the minimal Landau gauge. Simulations are done at four different values of β (namely β = 0, 0.8, 1.6 and 2.7 ) and for volumes up to 16 4 (up to 24 4 at β = 1.6). For the gluon propagator, Gribov noise seems to be of the order of magnitude of the numerical accuracy, even at very small values of the coupling β. On the contrary, for the ghost propagator, Gribov noise is clearly obs… Show more

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Cited by 144 publications
(295 citation statements)
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“…This is in agreement with the result obtained in reference [11], in which Gribov noise has been observed for the ghost propagator. In all cases, the effect is small but clearly detectable for the values of β in the strong-coupling region.…”
Section: Discussionsupporting
confidence: 93%
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“…This is in agreement with the result obtained in reference [11], in which Gribov noise has been observed for the ghost propagator. In all cases, the effect is small but clearly detectable for the values of β in the strong-coupling region.…”
Section: Discussionsupporting
confidence: 93%
“…As for the volume dependence, it seems that the horizon tensor becomes closer and closer 11 We have found only in very few cases a value of r larger than 8/3, which indicates the existence of other stationary points near the minimum at τ = 0 (see Figure 2). 12 See data for the average of the non-diagonal elements in Table 3.…”
Section: Resultsmentioning
confidence: 57%
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“…A lot of effort has been devoted to an estimate of the corresponding effects in lattice studies, see e.g. [15][16][17][18][19][20][21]. These provided evidence that for Green functions of lattice gauge theory the effects due to Gribov copies are not too large.…”
Section: Gribov Horizon and Zwanziger Conditionmentioning
confidence: 99%
“…In this region, the perturbative running coupling s ð 2 Þ diverges, and the confinement effect is extremely large, so that quark-gluon degrees of freedom are hidden and the system is described by hadrons. So far, the gluon propagator has been studied mainly in the Landau gauge both in analytic framework [14,15,[17][18][19] and in lattice QCD [20][21][22][23][24][25][26][27][28][29][30][31][32][33][34]. In the UV region, the gluon propagator takes a massless perturbative form, 1=p 2 , apart from the tensor factor.…”
Section: Introductionmentioning
confidence: 99%