We calculate (g-2)/2 of the muon, by improving the determination of the hadronic vacuum polarisation contribution, a_mu^{had,LO}, and its uncertainties. The different e+e- data sets for each exclusive (and the inclusive) channel are combined in order to obtain the optimum estimate of the cross sections and their uncertainties. QCD sum rules are evaluated in order to resolve an apparent discrepancy between the inclusive data and the sum of the exclusive channels. We conclude a_mu^{had,LO}=(683.1 +- 5.9_{exp} +- 2.0_{rad}) 10^{-10} which, when combined with the other contributions to (g-2)/2, is about 3 sigma below the present world average measurement
The Muon g-2 experiment at Fermilab has published the first result on Run-1 dataset in 2021 showing ...
The recent measurement of the muon g-2 at Fermilab confirms the previous Brookhaven result. The lead...
The muon anomalous magnetic moment is one of the most precisely measured quantities in particle phys...
I review recent progress in the prediction of the muon g 2. The main issue are those contributions w...
We calculate g–2 of the muon and the QED coupling alpha(MZ2), by improving the determination of the ...
In this talk I reviewed the data-driven theoretical calculation of the hadronic contributions to the...
A short review is given on the status of the anomalous magnetic moment of the muon, g−2. Emphasis is...
Soon, new experiments at FNAL and J-PARC will measure the muon anoma-lous magnetic moments with bett...
International audienceThe current status of the experimental measurements and theoretical prediction...
We propose an alternative method to extract the leading-order hadronic contribution to the muon g-2,...
The anomalous magnetic moment of the muon stands as an enduring test of the Standard Model (SM), whe...
We propose a novel approach to determine the leading hadronic corrections to the muon g -2. It consi...
In the thesis I have studied a new method to measure the Hadronic Leading-Order (HLO) contribution t...
Measurements of the anomalous magnetic moment of the muon, aμ, with increased precision are motivate...
We calculate the hadronic light-by-light contributions to the muon g - 2. We use both 1/Nc and chira...
The Muon g-2 experiment at Fermilab has published the first result on Run-1 dataset in 2021 showing ...
The recent measurement of the muon g-2 at Fermilab confirms the previous Brookhaven result. The lead...
The muon anomalous magnetic moment is one of the most precisely measured quantities in particle phys...
I review recent progress in the prediction of the muon g 2. The main issue are those contributions w...
We calculate g–2 of the muon and the QED coupling alpha(MZ2), by improving the determination of the ...
In this talk I reviewed the data-driven theoretical calculation of the hadronic contributions to the...
A short review is given on the status of the anomalous magnetic moment of the muon, g−2. Emphasis is...
Soon, new experiments at FNAL and J-PARC will measure the muon anoma-lous magnetic moments with bett...
International audienceThe current status of the experimental measurements and theoretical prediction...
We propose an alternative method to extract the leading-order hadronic contribution to the muon g-2,...
The anomalous magnetic moment of the muon stands as an enduring test of the Standard Model (SM), whe...
We propose a novel approach to determine the leading hadronic corrections to the muon g -2. It consi...
In the thesis I have studied a new method to measure the Hadronic Leading-Order (HLO) contribution t...
Measurements of the anomalous magnetic moment of the muon, aμ, with increased precision are motivate...
We calculate the hadronic light-by-light contributions to the muon g - 2. We use both 1/Nc and chira...
The Muon g-2 experiment at Fermilab has published the first result on Run-1 dataset in 2021 showing ...
The recent measurement of the muon g-2 at Fermilab confirms the previous Brookhaven result. The lead...
The muon anomalous magnetic moment is one of the most precisely measured quantities in particle phys...