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Two-Meson Form Factors in Unitarized Chiral Perturbation Theory

High Energy Physics - Phenomenology 2021-04-28 v2 High Energy Physics - Experiment Nuclear Theory

Abstract

We present a comprehensive analysis of form factors for two light pseudoscalar mesons induced by scalar, vector, and tensor quark operators. The theoretical framework is based on a combination of unitarized chiral perturbation theory and dispersion relations. The low-energy constants in chiral perturbation theory are fixed by a global fit to the available data of the two-meson scattering phase shifts. Each form factor derived from unitarized chiral perturbation theory is improved by iteratively applying a dispersion relation. This study updates the existing results in the literature and explores those that have not been systematically studied previously, in particular the two-meson tensor form factors within unitarized chiral perturbation theory. We also discuss the applications of these form factors as mandatory inputs for low-energy phenomena, such as the semi-leptonic decays Bsπ+π+B_s\to \pi^+\pi^-\ell^+\ell^- and the τ\tau lepton decay τππ0ντ\tau\rightarrow\pi^{-}\pi^{0}\nu_{\tau}, in searches for physics beyond the Standard Model.

Keywords

Cite

@article{arxiv.2011.00921,
  title  = {Two-Meson Form Factors in Unitarized Chiral Perturbation Theory},
  author = {Yu-Ji Shi and Chien-Yeah Seng and Feng-Kun Guo and Bastian Kubis and Ulf-G. Meißner and Wei Wang},
  journal= {arXiv preprint arXiv:2011.00921},
  year   = {2021}
}

Comments

53 pages, 21 figures, 3 tables