There exists a long standing discrepancy of around 3.5σ between experimental measurements and standard model calculations of the magnetic moment of the muon. Current experiments aim to reduce the experimental uncertainty by a factor of 4, and Standard Model calculations must also be improved by a similar factor. The largest uncertainty in the Standard Model calculation comes from the QCD contribution, in particular the leading order hadronic vacuum polarisation (HVP). To calculate the HVP contribution, we use lattice gauge theory, which allows us to study QCD at low energies. In order to better understand this quantity, we investigate the effect of QED corrections to the leading order HVP term by including QED in our lattice calculations, a...
We review the present status of the Standard Model calculation of the anomalous magnetic moment of t...
In recent years, the anomalous magnetic moment of the muon has triggered a lot of activity in the la...
The persistent discrepancy of about 3.5 standard deviations between the experimental measurement and...
There exists a long standing discrepancy of around 3.5σ between experimental measurements and standa...
There exists a long standing discrepancy of around 3.5σ between experimental measurements and standa...
There exists a long standing discrepancy of around 3.5 sigma between experimental measurements and s...
The current $3.5\sigma$ discrepancy between experimental and Standard Model determinations of the an...
The current $3.5\sigma$ discrepancy between experimental and Standard Model determinations of the an...
The current $3.5\sigma$ discrepancy between experimental and Standard Model determinations of the an...
The current 3:7 discrepancy between experimental and Standard Model determinations of the anomalou...
Experimental efforts aim at reducing the uncertainty on the measurement of the muon anomalous magnet...
International audienceAnomalous magnetic moments have guided the evolution of quantum field theory e...
The standard model of particle physics describes the vast majority of experiments and observations i...
International audienceThe standard model of particle physics describes the vast majority of experime...
We present a first-principles lattice QCD+QED calculation at physical pion mass of the leading-order...
We review the present status of the Standard Model calculation of the anomalous magnetic moment of t...
In recent years, the anomalous magnetic moment of the muon has triggered a lot of activity in the la...
The persistent discrepancy of about 3.5 standard deviations between the experimental measurement and...
There exists a long standing discrepancy of around 3.5σ between experimental measurements and standa...
There exists a long standing discrepancy of around 3.5σ between experimental measurements and standa...
There exists a long standing discrepancy of around 3.5 sigma between experimental measurements and s...
The current $3.5\sigma$ discrepancy between experimental and Standard Model determinations of the an...
The current $3.5\sigma$ discrepancy between experimental and Standard Model determinations of the an...
The current $3.5\sigma$ discrepancy between experimental and Standard Model determinations of the an...
The current 3:7 discrepancy between experimental and Standard Model determinations of the anomalou...
Experimental efforts aim at reducing the uncertainty on the measurement of the muon anomalous magnet...
International audienceAnomalous magnetic moments have guided the evolution of quantum field theory e...
The standard model of particle physics describes the vast majority of experiments and observations i...
International audienceThe standard model of particle physics describes the vast majority of experime...
We present a first-principles lattice QCD+QED calculation at physical pion mass of the leading-order...
We review the present status of the Standard Model calculation of the anomalous magnetic moment of t...
In recent years, the anomalous magnetic moment of the muon has triggered a lot of activity in the la...
The persistent discrepancy of about 3.5 standard deviations between the experimental measurement and...