As present and future experiments, on both the energy and precision frontiers, look to identify new physics beyond the Standard Model, we require more precise determinations of fundamental quantities, like the QED and electroweak couplings at various momenta. These can be obtained either entirely from experimental measurements, or from one such measurement at a particular virtuality combined with the couplings' virtuality dependence computed within the SM. Thus, a precise, entirely theoretical determination of the running couplings is highly desirable, even more since the preliminary results of the E989 experiment in Fermilab were published. We give results for the hadronic contribution to the QED running coupling $\alpha(Q^2)$ and weak mix...
The hadron collider experiments continue to make significant contributions to electroweak physics wh...
The evolution of the electromagnetic coupling, alpha, in the momentum-transfer range 1800 GeV2 \u3c ...
The effective renormalizable theory describing electromagnetic and strong interactions of quarks of ...
As present and future experiments, on both the energy and precision frontiers, look to identify new ...
The electromagnetic coupling $\alpha$ and the electroweak mixing angle $\theta_{\mathrm{W}}$ are par...
International audienceWe present results for the hadronic running of the electromagnetic coupling an...
We compute the hadronic running of the electromagnetic and weak couplings in lattice QCD with $N_\ma...
International audienceThe energy dependency (running) of the strength of electromagnetic interaction...
The electroweak mixing angle is a fundamental parameter of the theory of electroweak interactions. I...
The quark-connected leading-order hadronic contributions to the running of the electromagnetic fine ...
Precision physics requires appropriate inclusion of higher order effects and the knowledge of very p...
The weak mixing angle is a probe of the vector-axial coupling structure of electroweak interactions....
The evolution of the electromagnetic coupling, $\alpha$, in the momentum-transfer range 1800 GeV$^2 ...
The hadron collider experiments continue to make significant contributions to electroweak physics wh...
The evolution of the electromagnetic coupling, alpha, in the momentum-transfer range 1800 GeV2 \u3c ...
The effective renormalizable theory describing electromagnetic and strong interactions of quarks of ...
As present and future experiments, on both the energy and precision frontiers, look to identify new ...
The electromagnetic coupling $\alpha$ and the electroweak mixing angle $\theta_{\mathrm{W}}$ are par...
International audienceWe present results for the hadronic running of the electromagnetic coupling an...
We compute the hadronic running of the electromagnetic and weak couplings in lattice QCD with $N_\ma...
International audienceThe energy dependency (running) of the strength of electromagnetic interaction...
The electroweak mixing angle is a fundamental parameter of the theory of electroweak interactions. I...
The quark-connected leading-order hadronic contributions to the running of the electromagnetic fine ...
Precision physics requires appropriate inclusion of higher order effects and the knowledge of very p...
The weak mixing angle is a probe of the vector-axial coupling structure of electroweak interactions....
The evolution of the electromagnetic coupling, $\alpha$, in the momentum-transfer range 1800 GeV$^2 ...
The hadron collider experiments continue to make significant contributions to electroweak physics wh...
The evolution of the electromagnetic coupling, alpha, in the momentum-transfer range 1800 GeV2 \u3c ...
The effective renormalizable theory describing electromagnetic and strong interactions of quarks of ...