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@ARTICLE{Boccaletti:1033615,
author = {Boccaletti, A. and Borsanyi, Sz. and Davier, M. and Fodor,
Z. and Frech, F. and Gerardin, A. and Giusti, D. and Kotov,
A. Yu. and Lellouch, L. and Lippert, Th. and Lupo, A. and
Malaescu, B. and Mutzel, S. and Portelli, A. and Risch, A.
and Sjo, M. and Stokes, F. and Szabo, K. K. and Toth, B. C.
and Wang, G. and Zhang, Z.},
title = {{H}igh precision calculation of the hadronic vacuum
polarisation contribution to the muon anomaly},
publisher = {arXiv},
reportid = {FZJ-2024-06495, arXiv:2407.10913},
pages = {55p.},
year = {2024},
abstract = {We present a new lattice QCD calculation of the leading
order hadronic vacuum polarization contribution to the muon
anomalous magnetic moment $a_\mu$. We reduce uncertainties
compared to our earlier computation by $40\\%$,
arXiv:2002.12347. We perform simulations on finer lattices
allowing for an even more accurate continuum extrapolation.
We also include a small, long-distance contribution obtained
using input from experiments in a low-energy regime where
they all agree. Combined with other standard model
contributions our result leads to a prediction that differs
from the measurement of $a_\mu$ by only 0.9 standard
deviations. This provides a remarkable validation of the
standard model to 0.37ppm.},
keywords = {High Energy Physics - Lattice (hep-lat) (Other) / High
Energy Physics - Phenomenology (hep-ph) (Other) / High
Energy Physics - Theory (hep-th) (Other) / FOS: Physical
sciences (Other)},
pnm = {MUON - Lattice determination of the muon's anomalous
magnetic moment (101054515) / 5111 - Domain-Specific
Simulation $\&$ Data Life Cycle Labs (SDLs) and Research
Groups (POF4-511)},
pid = {G:(EU-Grant)101054515 / G:(DE-HGF)POF4-5111},
typ = {PUB:(DE-HGF)25},
eprint = {2407.10913},
howpublished = {arXiv:2407.10913},
archivePrefix = {arXiv},
SLACcitation = {$\%\%CITATION$ = $arXiv:2407.10913;\%\%$},
url = {https://juser.fz-juelich.de/record/1033615},
}