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arXiv:hep-lat/9412044·v1·High Energy Physics — Lattice

The continuum limit of the lattice Gribov problem, and a solution based on Hodge decomposition

Philippe de Forcrand🇨🇭 · James E. Hetrick🇺🇸

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Abstract

We study gauge fixing via the standard local extremization algorithm for 2-dimensional . On a lattice with spherical topology where all copies are lattice artifacts, we find that the number of these 'Gribov' copies diverges in the continuum limit. On a torus, we show that lattice artifacts can lead to the wrong evaluation of the gauge-invariant correlation length, when measured via a gauge-fixed procedure; this bias does not disappear in the continuum limit. We then present a new global approach, based on Hodge decomposition of the gauge field, which produces a unique smooth field in Landau gauge, and is economically powered by the FFT. We also discuss the use of this method for examining topological objects, and its extensions to non-abelian gauge fields.

Comments: 6 pages, uuencoded postscript, presented at Lattice 94

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