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NLO Electroweak Corrections to Multi-Boson Processes at a Muon Collider

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arxiv 2208.09438 v1 pith:7PXPJXVL submitted 2022-08-19 hep-ph

NLO Electroweak Corrections to Multi-Boson Processes at a Muon Collider

classification hep-ph
keywords correctionsprocessescollidermuonbosonelectroweakproductionwell
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present results on NLO electroweak (EW) corrections to multiple massive boson production processes at a future muon collider. Inclusive cross sections with $\mathcal{O}(\alpha)$ corrections for processes for up to four bosons in the final state as well as differential distributions for $HZ$ production are computed for $\sqrt{s}=3$, $10$ and $14$ TeV by using FKS subtraction in the NLO EW automated Monte-Carlo framework WHIZARD+RECOLA. Large logarithmic effects due to collinear ISR and EW virtual correction factors as well as the impacts of an energy cut on hard photons are discussed with an emphasis on the properties of Higgsstrahlung. The potential of a proposed muon collider for studying physics of the EW sector is underlined by the EW corrections significantly affecting observables for processes at high energies and boson multiplicities.

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Cited by 3 Pith papers

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  2. Heavy Vector Triplets at a Muon Collider

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    Muon colliders can probe heavy vector triplets up to 12 TeV, competitive with HE-LHC but below FCC-hh projections, including indirect electroweak precision limits.

  3. Towards a Fully Automated Differential $\text{NNLO}_\text{EW}$ Generator for Lepton Colliders

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    A framework based on the YFS theorem enables process-independent local IR subtraction and resummation matching for automated NNLO_EW calculations in lepton collider processes.