English

Spectral-weight sum rules for the hadronic vacuum polarization

High Energy Physics - Lattice 2023-03-15 v2 High Energy Physics - Phenomenology

Abstract

We develop a number of sum rules comparing spectral integrals involving judiciously chosen weights to integrals over the corresponding Euclidean two-point function. The applications we have in mind are to the hadronic vacuum polarization that determines the most important hadronic correction aμHVPa_\mu^{\rm HVP} to the muon anomalous magnetic moment. First, we point out how spectral weights may be chosen that emphasize narrow regions in s\sqrt{s}, providing a tool to investigate emerging discrepancies between data-driven and lattice determinations of aμHVPa_\mu^{\rm HVP}. Alternatively, for a narrow region around the ρ\rho mass, they may allow for a comparison of the dispersive determination of aμHVPa_\mu^{\rm HVP} with lattice deteruminations zooming in on the region of the well-known BaBar-KLOE discrepancy. Second, we show how such sum rules can in principle be used for carrying out precision comparisons of hadronic-τ\tau-decay-based data and e+e\mboxhadrons(γ)e^+e^-\to\mbox{hadrons}(\gamma)-based data, where lattice computations can provide the necessary isospin-breaking corrections.

Keywords

Cite

@article{arxiv.2210.13677,
  title  = {Spectral-weight sum rules for the hadronic vacuum polarization},
  author = {Diogo Boito and Maarten Golterman and Kim Maltman and Santiago Peris},
  journal= {arXiv preprint arXiv:2210.13677},
  year   = {2023}
}

Comments

33 pages, 5 figures; expanded discussions, version to be published, no changes in results