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Hadronic vacuum polarization for the muon $g-2$ from lattice QCD: Long-distance and full light-quark connected contribution

A. BazavovMichigan State U., East Lansing (main)Claude W. BernardWashington U., St. LouisDavid A. ClarkeC. T. H. DaviesDeTar, CarletonA. X. El-KhadraIllinois U., UrbanaSteven GottliebAnthony V. GrebeFermilabLeon HostetlerWilliam I. JayColorado State UHwancheol JeongAndreas S. KronfeldFermilabShaun LahertJ. LaihoSyracuse UG. Peter LepageCornell U., LEPPMichael LynchIllinois U., UrbanaAndrew LytleIllinois U., UrbanaCraig McNeileColorado UE. T. NeilCurtis T. PetersonMichigan State U., East Lansing (main)James N. SimoneFermilabJacob W. SitisonColorado URuth S. Van de WaterFermilabAlejandro VaqueroUtah U
arXiv (Cornell University)repository2024en
ABI

Аннотация

We present results for the dominant light-quark connected contribution to the long-distance window (LD) of the hadronic vacuum polarization contribution (HVP) to the muon $g-2$ from lattice quantum chromodynamics (QCD). Specifically, with a new determination of the lattice scale on MILC's physical-mass HISQ ensembles, using the $Ω^-$ baryon mass, we obtain a result of $400.2(2.3)_{\mathrm{stat}}(3.7)_{\mathrm{syst}}[4.3]_{\mathrm{total}} \times 10^{-10}$. Summing this result with our recent determinations of the light-quark connected contributions to the short- (SD) and intermediate-distance (W) windows, we obtain a sub-percent precision determination of the light-quark-connected contribution to HVP of $655.5(2.3)_{\mathrm{stat}}(3.9)_{\mathrm{syst}}[4.5]_{\mathrm{total}} \times 10^{-10}$. Finally, as a consistency check, we verify that an independent analysis of the full contribution is in agreement with the sum of individual windows. We discuss our future plans for improvements of our HVP calculations to meet the target precision of the Fermilab $g-2$ experiment.

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