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arXiv:1311.0397·v1·High Energy Physics — Phenomenology

From a Combined NNLO Lattice, Continuum Analysis of the Light Quark V-A Correlator

P.A. Boyle🇬🇧 · L. Del Debbio🇬🇧 · N. Garron🇮🇪 · R.J. Hudspith🇬🇧 · E. Kerrane🇪🇸 · K. Maltman🇨🇦 · J.M. Zanotti🇦🇺

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Abstract

A combination of lattice and continuum data for the light-quark V-A correlator, supplemented by results from a chiral sum-rule analysis of the flavor-breaking flavor - V-A correlator difference, is shown to make possible a high-precision NNLO determination of the renormalized NLO chiral low-energy constant . Key to this determination is the ability to simultaneously fix the two combinations of NNLO low-energy constants also entering the analysis. With current versions of the strange hadronic branching fractions required as input to the flavor-breaking V-A sum rule, we find . This represents both the best current precision for , and the first NNLO determination having all errors under full control.

Comments: 7 pages, 2 figures. Prepared for the proceedings of the 31st International Symposium on Lattice Field Theory, July 29-August 3, 2013, Mainz, Germany

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