arXiv:1403.6729·v2·High Energy Physics — Phenomenology
A Combined NNLO Lattice-Continuum Determination of
P.A. Boyle🇬🇧 · L. Del Debbio🇬🇧 · N. Garron🇮🇪 · R.J. Hudspith🇨🇦 · E. Kerrane🇪🇸 · K. Maltman🇦🇺 · J.M. Zanotti🇦🇺
Abstract
The renormalized next-to-leading-order (NLO) chiral low-energy constant, , is determined in a complete next-to-next-to-leading-order (NNLO) analysis, using a combination of lattice and continuum data for the flavor correlator and results from a recent chiral sum-rule analysis of the flavor-breaking combination of and correlator differences. The analysis also fixes two combinations of NNLO low-energy constants, the determination of which is crucial to the precision achieved for . Using the results of the flavor-breaking chiral sum rule obtained with current versions of the strange hadronic branching fractions as input, we find . This result represents the first NNLO determination of having all inputs under full theoretical and/or experimental control, and the best current precision for this quantity.
Comments: 21 pages, 4 figures, 1 table. Updated references, one additional clarifying footnote in discussion section