There is a long standing discrepancy between the Standard Model prediction for the muon g-2 and the value measured by the Brookhaven E821 Experiment. At present the discrepancy stands at about three standard deviations, with a comparable accuracy between experiment and theory. Two new proposals – at Fermilab and J-PARC – plan to improve the experimental uncertainty by a factor of 4, and it is expected that there will be a significant reduction in the uncertainty of the Standard Model prediction. I will review the status of the planned experiment at Fermilab, E989, which will analyse 21 times more muons than the BNL experiment and discuss how the systematic uncertainty will be reduced by a factor of 3 such that a precision of 0.14 ppm can be...
Two next generation muon $g-2$ experiments at Fermilab in the US and at J-PARC in Japan have been de...
Two next generation muon $g-2$ experiments at Fermilab in the US and at J-PARC in Japan have been de...
The current ~ 3.5σ discrepancy between the experimental measurement and theoretical prediction of th...
There is a long standing discrepancy between the Standard Model prediction for the muon and the valu...
Abstract. There is a long standing discrepancy between the Standard Model prediction for the muon g-...
There is a long standing discrepancy between the Standard Model prediction for the muon g-2 and the ...
There is a long standing discrepancy between the Standard Model prediction for the muon g-2 and the ...
Whitepaper prepared for the US Particle Physics "Snowmass" Self StudyThis White Paper briefly review...
This White Paper briefly reviews the present status of the muon (g − 2) Standard-Model prediction. T...
AbstractThere is a long standing discrepancy between the Standard Model prediction for the muon g−2 ...
The muon anomaly (g-2)μ/2 has been measured to 0.54 parts per million by E821 experiment at Brookhav...
Two next generation muon $g-2$ experiments at Fermilab in the US and at J-PARC in Japan have been de...
Two next generation muon $g-2$ experiments at Fermilab in the US and at J-PARC in Japan have been de...
The current ~ 3.5σ discrepancy between the experimental measurement and theoretical prediction of th...
There is a long standing discrepancy between the Standard Model prediction for the muon and the valu...
Abstract. There is a long standing discrepancy between the Standard Model prediction for the muon g-...
There is a long standing discrepancy between the Standard Model prediction for the muon g-2 and the ...
There is a long standing discrepancy between the Standard Model prediction for the muon g-2 and the ...
Whitepaper prepared for the US Particle Physics "Snowmass" Self StudyThis White Paper briefly review...
This White Paper briefly reviews the present status of the muon (g − 2) Standard-Model prediction. T...
AbstractThere is a long standing discrepancy between the Standard Model prediction for the muon g−2 ...
The muon anomaly (g-2)μ/2 has been measured to 0.54 parts per million by E821 experiment at Brookhav...
Two next generation muon $g-2$ experiments at Fermilab in the US and at J-PARC in Japan have been de...
Two next generation muon $g-2$ experiments at Fermilab in the US and at J-PARC in Japan have been de...
The current ~ 3.5σ discrepancy between the experimental measurement and theoretical prediction of th...