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Probing the muon g-2 anomaly with the Higgs boson at a Muon Collider

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arxiv 2012.02769 v3 pith:BFFHMAN4 submitted 2020-12-04 hep-ph hep-ex

classification hep-phhep-ex
keywords muonhigh-energyanomalycollidercurrentdipolehiggsphysics
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We point out that heavy new physics contributions in leptonic dipole moments and high-energy cross-sections of lepton pairs into Higgs bosons and photons are connected model-independently. In particular, we demonstrate that a muon collider, running at center-of-mass energies of several TeV, can provide a unique test of new physics in the muon g-2 through the study of high-energy processes such as mu+ mu- -> h gamma. This high-energy test would be of the utmost importance to shed light on the long-standing muon g-2 anomaly as it is not affected by the hadronic and experimental uncertainties entering the current low-energy determination of the muon g-2. Furthermore, we show that the current bound on the muon electric dipole moment can be improved by three orders of magnitude, down to few x 10^-22 e cm.

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  1. A comprehensive study of the charged Higgs boson in the two Higgs doublet type-II seesaw model

    hep-ph 2025-08 conditional novelty 4.0 of 10

    Charged Higgs production rates and 5-sigma discovery regions at a 3 TeV muon collider are computed for the 2HDMcT Type-III seesaw model, with the H1+ H1- channel exceeding the e+e- rate.

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