English

Study of electron-positron annihilation into $K\bar{K}\pi$ within resonance chiral theory

High Energy Physics - Phenomenology 2025-02-13 v3 Nuclear Theory

Abstract

In this paper, a coherent study of the e+ee^+e^- annihilation into K+Kπ0K^+K^-\pi^0, KS0KL0π0K^0_SK^0_L\pi^0 and KS0K±πK^0_SK^\pm\pi^\mp is carried out within the framework of resonance chiral theory. The amplitudes are fixed by fitting to the experimental cross-section and invariant mass spectrum. With these amplitudes, one can calculate the hadronic vacuum polarization form factors of these processes. The leading order contributions of σ(e+eKKˉπ)\sigma(e^+e^- \to K\bar{K}\pi) to the anomalous magnetic moment of the muon, (g2)μ(g-2)_\mu, is obtained as aμHVP,LO(e+eKKˉπ)=(3.178±0.071)×1010a_\mu^{\rm HVP,LO}(e^+e^- \to K\bar{K}\pi)=(3.178\pm0.071)\times10^{-10} up to Ecm=2.3E_{\rm cm}=2.3 GeV.

Keywords

Cite

@article{arxiv.2403.14294,
  title  = {Study of electron-positron annihilation into $K\bar{K}\pi$ within resonance chiral theory},
  author = {Bing-Hai Qin and Wen Qin and Ling-Yun Dai},
  journal= {arXiv preprint arXiv:2403.14294},
  year   = {2025}
}

Comments

14 pages, 2 figures, to be the same as the published version