We present a novel method for precisely determining the running QCD coupling constant αs(Q2) over a wide range of Q2 from event shapes for electron-positron annihilation measured at a single annihilation energy s. The renormalization scale Q2 of the running coupling depends dynamically on the virtuality of the underlying quark and gluon subprocess and thus the specific kinematics of each event. The determination of the renormalization scale for event shape distributions is obtained by using the principle of maximum conformality (PMC), a rigorous scale-setting method for gauge theories which satisfies all the requirements of renormalization group invariance, including renormalization-scheme independence and consistency with Abelian theory in...
Heavy fermion pair production in e+e- annihilation is a fundamental process in hadron physics and is...
Abstract We present a novel method for precisely determining the QCD running coupling from R uds mea...
A key problem in making precise perturbative QCD predictions is the uncertainty in determining the r...
We present a novel method for precisely determining the running QCD coupling constant αs(Q2) over a ...
We present a novel method for precisely determining the running QCD coupling constant αs(Q2) over a ...
We present a novel method for precisely determining the running QCD coupling constant αs(Q2) over a ...
In this paper, we give comprehensive analyses for event shape observables in electron-positron annih...
We present a comprehensive and self-consistent analysis for the thrust distribution by using the pri...
We present a comprehensive and self-consistent analysis for the thrust distribution by using the pri...
We present a comprehensive and self-consistent analysis for the thrust distribution by using the pri...
We present a comprehensive and self-consistent analysis for the thrust distribution by using the pri...
Heavy fermion pair production in e+e- annihilation is a fundamental process in hadron physics and is...
Heavy fermion pair production in e+e- annihilation is a fundamental process in hadron physics and is...
Heavy fermion pair production in e+e- annihilation is a fundamental process in hadron physics and is...
Heavy fermion pair production in e+e- annihilation is a fundamental process in hadron physics and is...
Heavy fermion pair production in e+e- annihilation is a fundamental process in hadron physics and is...
Abstract We present a novel method for precisely determining the QCD running coupling from R uds mea...
A key problem in making precise perturbative QCD predictions is the uncertainty in determining the r...
We present a novel method for precisely determining the running QCD coupling constant αs(Q2) over a ...
We present a novel method for precisely determining the running QCD coupling constant αs(Q2) over a ...
We present a novel method for precisely determining the running QCD coupling constant αs(Q2) over a ...
In this paper, we give comprehensive analyses for event shape observables in electron-positron annih...
We present a comprehensive and self-consistent analysis for the thrust distribution by using the pri...
We present a comprehensive and self-consistent analysis for the thrust distribution by using the pri...
We present a comprehensive and self-consistent analysis for the thrust distribution by using the pri...
We present a comprehensive and self-consistent analysis for the thrust distribution by using the pri...
Heavy fermion pair production in e+e- annihilation is a fundamental process in hadron physics and is...
Heavy fermion pair production in e+e- annihilation is a fundamental process in hadron physics and is...
Heavy fermion pair production in e+e- annihilation is a fundamental process in hadron physics and is...
Heavy fermion pair production in e+e- annihilation is a fundamental process in hadron physics and is...
Heavy fermion pair production in e+e- annihilation is a fundamental process in hadron physics and is...
Abstract We present a novel method for precisely determining the QCD running coupling from R uds mea...
A key problem in making precise perturbative QCD predictions is the uncertainty in determining the r...