The muon anomaly aμ=(gμ−2)/2 showing a persisting 3 to 4 σ deviation between the SM prediction and the experiment is one of the most promising signals for physics beyond the SM. As is well known, the hadronic uncertainties are limiting the accuracy of the Standard Model prediction. Therefore a big effort is going on to improve the evaluations of hadronic effects in order to keep up with the 4-fold improved precision expected from the new Fermilab measurement in the near future. A novel complementary type experiment planned at J-PARC in Japan, operating with ultra cold muons, is expected to be able to achieve the same accuracy but with completely different systematics. So exciting times in searching for New Physics are under way. I discuss t...
Measurements of the anomalous magnetic moment of the muon, aμ, with increased precision are motivate...
The measurement of the muon magnetic anomaly aµ = (gµ−2/2), where g is the g-factor of the muon, is ...
Two next generation muon $g-2$ experiments at Fermilab in the US and at J-PARC in Japan have been de...
The muon anomaly aμ=(gμ-2)/2 showing a persisting 3 to 4 σ deviation between the SM prediction and t...
The muon anomaly $a_\mu=(g_\mu-2)/2$ showing a persisting 3 to 4 $\sigma$ deviation between the SM p...
The muon anomaly aμ=(gμ-2)/2 showing a persisting 3 to 4 σ deviation between the SM prediction and t...
Abstract We review the latest experimental achievements on the hadronic cross section mea-surements ...
The Fermilab muon g-2 experiment will measure the muon anomalous magnetic moment aμ to 140 ppb – a f...
The Fermilab muon g-2 experiment will measure the muon anomalous magnetic moment aμ to 140 ppb – a f...
This White Paper briefly reviews the present status of the muon (g − 2) Standard-Model prediction. T...
Anomalous magnetic moment of the muon, $a_{\mu}=(g_{\mu}-2)/2$, is one of the most precisely measure...
A short review is given on the status of the anomalous magnetic moment of the muon, g−2. Emphasis is...
The anomalous magnetic moment of the muon (g − 2)µ is one of the most precisely measured quantities ...
There is a long standing discrepancy between the Standard Model prediction for the muon g-2 and 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...
The measurement of the muon magnetic anomaly aµ = (gµ−2/2), where g is the g-factor of the muon, is ...
Two next generation muon $g-2$ experiments at Fermilab in the US and at J-PARC in Japan have been de...
The muon anomaly aμ=(gμ-2)/2 showing a persisting 3 to 4 σ deviation between the SM prediction and t...
The muon anomaly $a_\mu=(g_\mu-2)/2$ showing a persisting 3 to 4 $\sigma$ deviation between the SM p...
The muon anomaly aμ=(gμ-2)/2 showing a persisting 3 to 4 σ deviation between the SM prediction and t...
Abstract We review the latest experimental achievements on the hadronic cross section mea-surements ...
The Fermilab muon g-2 experiment will measure the muon anomalous magnetic moment aμ to 140 ppb – a f...
The Fermilab muon g-2 experiment will measure the muon anomalous magnetic moment aμ to 140 ppb – a f...
This White Paper briefly reviews the present status of the muon (g − 2) Standard-Model prediction. T...
Anomalous magnetic moment of the muon, $a_{\mu}=(g_{\mu}-2)/2$, is one of the most precisely measure...
A short review is given on the status of the anomalous magnetic moment of the muon, g−2. Emphasis is...
The anomalous magnetic moment of the muon (g − 2)µ is one of the most precisely measured quantities ...
There is a long standing discrepancy between the Standard Model prediction for the muon g-2 and 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...
The measurement of the muon magnetic anomaly aµ = (gµ−2/2), where g is the g-factor of the muon, is ...
Two next generation muon $g-2$ experiments at Fermilab in the US and at J-PARC in Japan have been de...