arXiv · hep-ph/0307200
The electroweak form factor \hatκ(q^2) and the running of \sin^2 \hatθ_W
Abstract
Gauge independent form factors ρ^(e; e) and \hatκ^(e; e)(q^2) for Moller scattering at s << m_W^2 are derived. It is pointed out that \hatκ^(e; e) is very different from its counterparts in other processes. The relation between the effective parameter \hatκ^(e; e)(q^2,μ) \sin^2 \hatθ_W(μ) and \sin^2 θ_eff is derived in a scale-independent manner. A gauge and process-independent running parameter \sin^2 \hatθ_W (q^2), based on the pinch-technique self-energy a_{γZ} (q^2), is discussed for all q^2 values. At q^2=0 it absorbs very accurately the Czarnecki-Marciano calculation of the Moller scattering asymmetry at low s values, and at q^2 = m^2_Z it is rather close to \sin^2 θ_eff. The q^2 dependence of \sin^2 \hatθ_W (q^2) is displayed in the space and time-like domains.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
A. Ferroglia, G. Ossola, A. Sirlin. 2004-02-03. The electroweak form factor \hatκ(q^2) and the running of \sin^2 \hatθ_W. https://doi.org/10.1140/epjc%2Fs2004-01604-1
Cite the original work for its findings. Save a collection to share your selection of sources.