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arXiv:1412.1247·v1·High Energy Physics — Phenomenology

Isospin breaking in pion and form factors

Véronique Bernard🇫🇷 · Sébastien Descotes-Genon🇫🇷 · Marc Knecht🇫🇷

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Abstract

Isospin breaking in the form factors induced by the difference between charged and neutral pion masses is discussed within a framework built on suitably subtracted dispersion representations. The form factors are constructed in an iterative way up to two loops in the low-energy expansion by implementing analyticity, crossing, and unitarity due to two-meson intermediate states. Analytical expressions for the phases of the two-loop form factors of the channel are presented, allowing one to connect the difference of form-factor phase shifts measured experimentally (out of the isospin limit) and the difference of - and -wave phase shifts studied theoretically (in the isospin limit). The dependence with respect to the two -wave scattering lengths and in the isospin limit is worked out in a general way, in contrast to previous analyses based on one-loop chiral perturbation theory. The results on the phases of the form factors obtained by the NA48/2 collaboration at the CERN SPS are reanalysed including isospin-breaking correction to extract values for the scattering lengths and .

Comments: 15 pages, 3 figures, prepared for the proceedings of the XIth Confinement and Hadron Spectrum Conference, Saint-Petersburg, Sept. 8-12, 2014