First beyond-NLO tensor decomposition and higher-order analytic one-loop amplitudes for e+e- to pi+pi-gamma, paired with a fast numerical five-point integral evaluator.
Aliberti et al.,Radiative corrections and Monte Carlo tools for low-energy hadronic cross sections in๐+๐โ collisions,2410.22882
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A general framework quantifies correlation-induced uncertainties in precision data combinations and applies it to e+e- to hadrons cross sections for muon g-2 HVP determinations.
Disperon QED is a new technique that feeds experimental data into higher-order QED loop calculations in Monte Carlo generators via dispersion relations and threshold subtraction.
PrecisionSM is a new annotated database of low-energy e+e- hadronic cross sections for use in data-driven calculations of the muon anomalous magnetic moment a_mu.
The updated SM prediction for the muon anomalous magnetic moment is 116592033(62)ร10^{-11}, showing no tension with the experimental average of 38(63)ร10^{-11}.
citing papers explorer
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Tensor decomposition of $e^+e^-\to\pi^+\pi^-\gamma$ to higher orders in the dimensional regulator
First beyond-NLO tensor decomposition and higher-order analytic one-loop amplitudes for e+e- to pi+pi-gamma, paired with a fast numerical five-point integral evaluator.
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Muon $g$$-$2: correlation-induced uncertainties in precision data combinations
A general framework quantifies correlation-induced uncertainties in precision data combinations and applies it to e+e- to hadrons cross sections for muon g-2 HVP determinations.
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Disperon QED
Disperon QED is a new technique that feeds experimental data into higher-order QED loop calculations in Monte Carlo generators via dispersion relations and threshold subtraction.
-
PrecisionSM: an annotated database for low-energy $e^+e^-$ hadronic cross sections
PrecisionSM is a new annotated database of low-energy e+e- hadronic cross sections for use in data-driven calculations of the muon anomalous magnetic moment a_mu.
-
The anomalous magnetic moment of the muon in the Standard Model: an update
The updated SM prediction for the muon anomalous magnetic moment is 116592033(62)ร10^{-11}, showing no tension with the experimental average of 38(63)ร10^{-11}.