28 July 2024 to 3 August 2024
Europe/London timezone

The hadronic contribution to the running of $\alpha$ and the electroweak mixing angle

1 Aug 2024, 09:40
20m
Talk Standard Model Parameters Standard Model parameters

Speaker

Alessandro Conigli (University of Mainz)

Description

We report on our update to [JHEP 08 (2022) 220] on the hadronic running of electroweak couplings from $O(a)$-improved Wilson fermions with $N_f=2+1$ flavours. The inclusion of additional ensembles at very fine lattice spacings together with a number of techniques to split the different contributions for a better control of cutoff effects allow us to achieve improved precision. We employ two different discretizations of the vector current to compute the subtracted Hadronic Vacuum Polarization (HVP) functions $\bar{\Pi}^{\gamma\gamma}$ and $\bar{\Pi}^{Z\gamma}$ for Euclidean time momenta up to $Q^2\leq 9 \ \mathrm{GeV}^2$. To reduce cutoff effects in the short distance region we apply a suitable subtraction to the TMR kernel function, which cancels the leading $x_0^4$ behaviour. The subtracted term is then computed in perturbative QCD using the Adler function and added back to compensate for the subtraction. Chiral-continuum extrapolations are performed with five values of the lattice spacings and several pion masses, including its physical value, and several fit ansätze are explored to estimate the systematics arising from model selection. Our results show excellent prospects for high-precision estimates of $\Delta\alpha_{\mathrm{had}}^{(5)}(M_Z^2)$ at the Z-pole.

Primary author

Alessandro Conigli (University of Mainz)

Co-authors

Georg von Hippel (University of Mainz) Hartmut Wittig (University of Mainz) Harvey B. Meyer (University of Mainz) Konstantin Ottnad (University of Mainz) Simon Kuberski (CERN)

Presentation materials