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arXiv:1410.8358·v1·High Energy Physics — Lattice

Testing the Witten-Veneziano mechanism with the Yang-Mills gradient flow on the lattice

Marco Cè🇮🇹 · Cristian Consonni🇮🇹 · Georg P. Engel🇮🇹 · Leonardo Giusti🇮🇹

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Abstract

We present a precise computation of the topological charge distribution in the Yang-Mills theory. It is carried out on the lattice with high statistics Monte Carlo simulations by employing the clover discretization of the field strength tensor combined with the Yang-Mills gradient flow. The flow equations are integrated numerically by a fourth-order structure-preserving Runge-Kutta method. We have performed simulations at four lattice spacings and several lattice sizes to remove with confidence the systematic errors in the second (topological susceptibility ) and the fourth cumulant of the distribution. In the continuum we obtain the preliminary results and the ratio between the fourth and the second cumulant . Our results disfavour the -behaviour of the vacuum energy predicted by dilute instanton models, while they are compatible with the expectation from the large- expansion.

Comments: 7 pages, 6 figures, talk presented at the 32nd International Symposium on Lattice Field Theory - Lattice 2014, June 23-28, 2014, Columbia University New York, NY

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