Momentum-dependence of $\rho-\omega$ mixing in the pion vector form factor and its effect on $(g-2)_\mu$
Yun-Hua Chen, Meng-Ge Qin

TL;DR
This paper investigates the momentum dependence of $ ho- ext{omega}$ mixing in the pion form factor and its impact on the muon's anomalous magnetic moment, using resonance chiral theory and experimental data.
Contribution
It introduces a detailed analysis of momentum-dependent $ ho- ext{omega}$ mixing effects, including loop contributions and latest data, improving the understanding of their role in $a_ ext{mu}$ calculations.
Findings
Both mixing schemes fit the data well.
Momentum-dependent scheme shows greater theoretical consistency.
Results for $a_ ext{mu}$ agree within errors across schemes.
Abstract
The inclusion of the mixing effect is essential for a precise description of the pion electromagnetic form factor in the process, which quantifies the two-pion contribution to the anomalous magnetic moment of the muon . In this paper, we analyse the momentum dependence of the mixing by considering loop contributions at the next-to-leading order in the expansion within the framework of resonance chiral theory. We revisit the work [Y. H. Chen, D. L. Yao, and H. Q. Zheng, Commun. Theor. Phys. 69 (2018) 1], considering the contribution arising from the kaon mass splitting in the kaon loops and the latest experimental data. We perform two kinds of fits (with momentum-independent or momentum-dependent mixing amplitude) to describe the and …
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Taxonomy
TopicsParticle physics theoretical and experimental studies · Quantum Chromodynamics and Particle Interactions · High-Energy Particle Collisions Research
