English

Muon g-2 Theory: the Hadronic Part

High Energy Physics - Phenomenology 2018-02-14 v1

Abstract

I present a status report of the hadronic vacuum polarization effects for the muon g2g-2, to be considered as an update of [1]. The update concerns recent new inclusive RR measurements from KEDR in the energy range 1.84 to 3.72 GeV. For the leading order contributions I find aμhad(1)=(688.07±4.14)[688.77±3.38]×1010a_\mu^{\mathrm{had}(1)}=(688.07\pm 4.14)[688.77\pm3.38]\times 10^{-10} based on e+ee^+e^-data [incl. τ\tau data], aμhad(2)=(9.93±0.07)×1010a_\mu^{\mathrm{had}(2)}= (-9.93\pm 0.07) \times 10^{-10} (NLO) and aμhad(3)=(1.22±0.01)×1010a_\mu^{\mathrm{had}(3)}= (1.22\pm 0.01) \times 10^{-10} (NNLO). Collecting recent progress in the hadronic light-by-light scattering I adopt π0,η,η\pi^0,\eta,\eta' [95±1295 \pm 12] + axial--vector [8± 38 \pm ~3] + scalar [6± 1-6\pm ~1] + π,K\pi,K loops [20±5-20\pm 5] + quark loops [22± 422\pm ~4] + tensor [1± 01\pm ~0] + NLO [3± 23\pm ~2] which yields aμ(6)(lbl,had)=(103±29)×1011. a^{(6)}_\mu(\mathrm{lbl},\mathrm{had})=(103 \pm 29) \times 10^{-11}. With these updates I find aμexpaμthe=(31.3±7.7)×1010a_\mu^{\rm exp}-a_\mu^{\rm the}=(31.3\pm 7.7)\times 10^{-10} a 4.1 σ\sigma deviation. Recent lattice QCD results and future prospects to improve hadronic contributions are discussed.

Keywords

Cite

@article{arxiv.1705.00263,
  title  = {Muon g-2 Theory: the Hadronic Part},
  author = {Fred Jegerlehner},
  journal= {arXiv preprint arXiv:1705.00263},
  year   = {2018}
}

Comments

17 pages, 26 figures

R2 v1 2026-06-22T19:32:04.258Z