In this talk I reviewed the data-driven theoretical calculation of the hadronic contributions to the anomalous magnetic moment of the muon in the Standard Model mainly as it has been presented in the White Paper, but also including the most recent developments. All this is presented in the light of the new measurement of (g − 2)μ recently released by the Fermilab experiment, which led to an increase of the discrepancy with the Standard Model from 3.7 to 4.2σ
The measurement of the muon magnetic anomaly aµ = (gµ−2/2), where g is the g-factor of the muon, is ...
We review the present status of the hadronic light-by-light contribution to muon g-2 and critically ...
The largest uncertainties in the Standard Model calculation of the anomalous magnetic moment of the ...
In this talk I reviewed the data-driven theoretical calculation of the hadronic contributions to the...
In this talk I reviewed the data-driven theoretical calculation of the hadronic contributions to the...
Measurements of the anomalous magnetic moment of the muon, aμ, with increased precision are motivate...
Soon, new experiments at FNAL and J-PARC will measure the muon anoma-lous magnetic moments with bett...
Soon, new experiments at FNAL and J-PARC will measure the muon anoma-lous magnetic moments with bett...
Soon, new experiments at FNAL and J-PARC will measure the muon anoma-lous magnetic moments with bett...
Soon, new experiments at FNAL and J-PARC will measure the muon anoma-lous magnetic moments with bett...
A short review is given on the status of the anomalous magnetic moment of the muon, g−2. Emphasis is...
The E-989 experiment planned at Fermi National Laboratory in Batavia, IL, USA, has a goal to measur...
International audienceThe current status of the experimental measurements and theoretical prediction...
The E-989 experiment planned at Fermi National Laboratory in Batavia, IL, USA, has a goal to measur...
The anomalous magnetic moment of the muon stands as an enduring test of the Standard Model (SM), whe...
The measurement of the muon magnetic anomaly aµ = (gµ−2/2), where g is the g-factor of the muon, is ...
We review the present status of the hadronic light-by-light contribution to muon g-2 and critically ...
The largest uncertainties in the Standard Model calculation of the anomalous magnetic moment of the ...
In this talk I reviewed the data-driven theoretical calculation of the hadronic contributions to the...
In this talk I reviewed the data-driven theoretical calculation of the hadronic contributions to the...
Measurements of the anomalous magnetic moment of the muon, aμ, with increased precision are motivate...
Soon, new experiments at FNAL and J-PARC will measure the muon anoma-lous magnetic moments with bett...
Soon, new experiments at FNAL and J-PARC will measure the muon anoma-lous magnetic moments with bett...
Soon, new experiments at FNAL and J-PARC will measure the muon anoma-lous magnetic moments with bett...
Soon, new experiments at FNAL and J-PARC will measure the muon anoma-lous magnetic moments with bett...
A short review is given on the status of the anomalous magnetic moment of the muon, g−2. Emphasis is...
The E-989 experiment planned at Fermi National Laboratory in Batavia, IL, USA, has a goal to measur...
International audienceThe current status of the experimental measurements and theoretical prediction...
The E-989 experiment planned at Fermi National Laboratory in Batavia, IL, USA, has a goal to measur...
The anomalous magnetic moment of the muon stands as an enduring test of the Standard Model (SM), whe...
The measurement of the muon magnetic anomaly aµ = (gµ−2/2), where g is the g-factor of the muon, is ...
We review the present status of the hadronic light-by-light contribution to muon g-2 and critically ...
The largest uncertainties in the Standard Model calculation of the anomalous magnetic moment of the ...