Two-pion contribution to hadronic vacuum polarization
Gilberto Colangelo, Martin Hoferichter, Peter Stoffer

TL;DR
This paper analyzes $e^+e^- o ext{pi}^+ ext{pi}^-$ data using dispersion relations to refine the two-pion contribution to the muon's anomalous magnetic moment, considering systematic errors and data consistency.
Contribution
It introduces an extended Omnès representation for the pion form factor, incorporating systematic error analysis and providing improved constraints on low-energy $ ext{pi} ext{pi}$ scattering and the pion charge radius.
Findings
Achieves statistically acceptable fits with energy calibration adjustments.
Finds a lower $ ho$ meson mass than PDG average.
Provides precise estimates for the two-pion contribution to muon g-2.
Abstract
We present a detailed analysis of data up to in the framework of dispersion relations. Starting from a family of -wave phase shifts, as derived from a previous Roy-equation analysis of scattering, we write down an extended Omn\`es representation of the pion vector form factor in terms of a few free parameters and study to which extent the modern high-statistics data sets can be described by the resulting fit function that follows from general principles of QCD. We find that statistically acceptable fits do become possible as soon as potential uncertainties in the energy calibration are taken into account, providing a strong cross check on the internal consistency of the data sets, but preferring a mass of the meson significantly lower than the current PDG average. In addition to a complete treatment of…
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