10 citations · 13 across the 2 of their papers we have counts for
14 papers
Generalized Crewther relation and a novel demonstration of the scheme independence of commensurate scale relations up to all orders
Xu-Dong Huang, Xing-Gang Wu, Qing Yu +3
In the paper, we make a detailed study on the generalized Crewther Relation (GCR) between the Adler function () and the Gross-Llewellyn Smith sum rules coefficient ($C^{\rm GLS}…
-boson hadronic decay width up to -order QCD corrections using the single-scale approach of the principle of maximum conformality
Xu-Dong Huang, Xing-Gang Wu, Xu-Chang Zheng +3
In the paper, we study the properties of the -boson hadronic decay width by using the -order quantum chromodynamics (QCD) corrections with the help of the pr…
Gauge dependence of the perturbative QCD predictions under the momentum space subtraction scheme
Jun Zeng, Xing-Gang Wu, Xu-Chang Zheng +1
The momentum space subtraction (MOM) scheme is one of the most frequently used renormalization schemes in perturbative QCD (pQCD) theory. In the paper, we make a detailed discussio…
Revisiting the Bottom Quark Forward-Backward Asymmetry in Electron-Positron Collisions
Sheng-Quan Wang, Rui-Qing Meng, Xing-Gang Wu +2
The bottom quark forward-backward asymmetry is a key observable in electron-positron collisions at the peak. In this paper, we employ the Principle of Maximum…
Renormalization Scale Setting for Heavy Quark Pair Production in Annihilation near the Threshold Region
Sheng-Quan Wang, Stanley J. Brodsky, Xing-Gang Wu +2
Heavy fermion pair production in annihilation is a fundamental process in hadron physics and is of considerable interest for various phenomena. In this paper, we will appl…
Novel Method for the Precise Determination of the QCD Running Coupling from Event Shapes Distributions in Electron-Positron Annihilation
Sheng-Quan Wang, Stanley J. Brodsky, Xing-Gang Wu +2
We present a novel method for precisely determining the running QCD coupling constant over a wide range of from event shapes for electron-positron annihilation mea…