arXiv:1503.02248·v2·High Energy Physics — Phenomenology
Scrutinizing the eta-eta' mixing, masses and pseudoscalar decay constants in the framework of U(3) chiral effective field theory
Xu-Kun Guo🇨🇳 · Zhi-Hui Guo🇨🇳 · Jose Antonio Oller🇪🇸 · Juan Jose Sanz-Cillero🇪🇸
Abstract
We study the - mixing up to next-to-next-to-leading-order in chiral perturbation theory in the light of recent lattice simulations and phenomenological inputs. A general treatment for the - mixing at higher orders, with the higher-derivative, kinematic and mass mixing terms, is addressed. The connections between the four mixing parameters in the two-mixing-angle scheme and the low energy constants in the chiral effective theory are provided both for the singlet-octet and the quark-flavor bases. The axial-vector decay constants of pion and kaon are studied in the same order and confronted with the lattice simulation data as well. The quark-mass dependences of , and are found to be well described at next-to-leading order. Nonetheless, in order to simultaneously describe the lattice data and phenomenological determinations for the properties of light pseudoscalars and , the next-to-next-to-leading order study is essential. Furthermore, the lattice and phenomenological inputs are well reproduced for reasonable values of low the energy constants, compatible with previous bibliography.
Comments: 29 pages, 5 figures. Updated numerical results. References added. To match the published version in JHEP