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May 16, 2026Journal of High Energy Physics0 citationsOpen Access

Constraints on anomalous quartic gauge couplings via γγ and Zγ vector boson scattering at muon colliders

MTM. TekinASA. SenolHDH. Denizli

Key Points

  • This research investigates the sensitivity of anomalous quartic gauge couplings at future muon colliders, focusing on dimension-8 operators.
  • Analyzed processes μ+μ−→μ+γγμ− and μ+μ−→μ+Zγμ− at 3 TeV and 10 TeV.
  • Generated events with MadGraph5_aMC@NLO and applied Pythia8 and Delphes for simulations.
  • Used a multivariate analysis with Boosted Decision Trees for signal-background discrimination.
  • Future muon colliders show significant sensitivity improvements for anomalous quartic gauge couplings over current limits.
  • The 10 TeV muon collider outperforms current ATLAS constraints at the LHC and future hadron colliders with a projected 95% confidence limit.
  • Signal processing methods maintain unitarity through an energy-dependent clipping procedure to ensure valid EFT applications.

Abstract

A bstract In the Standard Model, the couplings between gauge bosons are tightly constrained by the principles of gauge symmetry and renormalizability. However, the presence of anomalous couplings suggests the possibility of new physics beyond the Standard Model (BSM). In this study, we focus on the sensitivities of anomalous quartic gauge couplings (aQGCs), specially the dimension-8 operators associated with field-strength tensor structures within the effective field theory (EFT) framework, at future Muon Colliders. Our analysis targets the neutral aQGC-sensitive processes μ + μ − → μ + γγμ − and μ + μ − → μ + Zγμ −, simulated at center-of-mass energies of 3 TeV and 10 TeV. Signal and background events are generated using MadGraph5ₐMC@NLO, interfaced with Pythia8 for parton showering and hadronization, and Delphes for fast detector simulation. A multivariate analysis based on Boosted Decision Trees (BDTs) is employed to enhance signal-to-background discrimination, utilizing a comprehensive set of kinematic and reconstructed observables from the final-state particles. Unitarity is preserved through the application of an energy-dependent clipping procedure within the EFT validity regime. Our findings indicate that future muon colliders offer significant sensitivity improvements over current experimental constraints on aQGCs. Furthermore, a comparison with other future collider scenarios shows that the 10 TeV Muon Collider, even with a 10% systematic uncertainty, provides substantially stronger projected limits at 95% confidence level than those currently reported by the ATLAS collaboration at the LHC as well as projected limits by future hadron colliders. These results underscore the enhanced potential of high-energy muon collider to probe new physics in the electroweak sector through precision measurements of aQGCs.

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Cite This Study

Tekin et al. (2026) studied this question.

synapsesocial.com/papers/6a080a41a487c87a6a40c1cehttps://doi.org/10.1007/jhep05(2026)161
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