Application of 'Optimised' Perturbation Theory to Determination of alphas(MZ2) from Hadronic Event Shape Observables in e+e- Annihilation
P. N. Burrows, H. Masuda, D. Muller, Y. Ohnishi
Abstract
We have applied so-called `optimised' perturbation theory to resolve the renormalisation-scale (mu) ambiguity of exact O(alphas2) QCD calculations of event shape observables in e+e- --> hadrons. We fitted the optimised predictions for 15 observables to hadronic Z0 decay data from the SLD experiment to determine alphas(MZ2). Comparing with results using the physical scale mu = MZ we found no reduction in the scatter among alphas(MZ2) values from the 15 observables, implying that the O(alphas2) predictions with optimised scales are numerically no closer to the exact all-orders results than those with the physical scale.
Create a lesson
Related papers
Chiral soliton lattice in inhomogeneous magnetic fields
Tomas Brauner, Ramkumar Radhakrishnan
From the November Revolution toward the Millennium
Chris Quigg
An Axial UA(1)Lμ-Lτ: UV Completion and Experimental Searches
Rundong Fang, Jinhui Guo, Ming Li et al.
Hunting long-lived doubly charged scalars at the HL-LHC
Biplob Bhattacherjee, Rituparna Ghosh, Swagata Mukherjee et al.
Enigmatic properties of Ξ(1620) and Ξ(1690)
Taísa Veloso, K. P. Khemchandani, A. Martinez Torres et al.
Exploring Z/γ-mediated heavy FCNCs at the FCC-ee
Abhik Sarkar, Subhajit Kala, Amir Subba et al.