arXiv · hep-ph/9309307
Oblique Corrections To The W Width
Abstract
The lowest-order expression for the partial $W$ width to $e ν,~Γ(W \to e ν) = G_μM_W^3 /(6 π\sqrt{2})$, has no oblique radiative corrections from new physics if the measured $W$ mass is used. Here $G_μ= (1.16639 \pm 0.00002) \times 10^{-5}$ GeV/$c^2$ is the muon decay constant. For the present value of $M_W = (80.14 \pm 0.27)$ GeV/$c^2$, and with $m_t = 140$ GeV$/c^2$, one expects $Γ(W \to e ν) = (224.4 \pm 2.3)$ MeV. The total width $Γ_{\rm tot}(W)$ is also expected to lack oblique corrections from new physics, so that $Γ_{\rm tot} (W)/ Γ(W \to e ν) = 3 + 6 [1 + \{α_s (M_W)/π\}]$. Present data are consistent with this prediction.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Jonathan L. Rosner, Mihir P. Worah, Tatsu Takeuchi. 1993-09-21. Oblique Corrections To The W Width. https://doi.org/10.1103/physrevd.49.1363
Cite the original work for its findings. Save a collection to share your selection of sources.