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2026-07-28 17:32 UTC · hep-ph · hep-ph, hep-ex

Probing Lepton-Flavor-Violating Four-Lepton Operators at a Muon Collider

Sukanta Dutta, Purnath Unnikrishnan, Yashasvi

We investigate charged lepton-flavour violation (LFV) induced by dimension-six four-lepton operators within the Standard Model Effective Field Theory at a proposed high-energy muon collider. We study the processes $μ^{+}μ^{-}\to e^{\pm}τ^{\mp}$, $μ^{+}μ^{-}\to e^{\pm}μ^{\mp}$, and $μ^{+}μ^{-}\to μ^{\pm}τ^{\mp}$ at $\sqrt{s}=3$, $10$, and $14$~TeV, incorporating beam polarisation and hadronic $τ$ reconstruction. Using an optimal-observable analysis of the angular distributions, we perform a global fit to the relevant set of four-lepton operators. Projected sensitivities reach $C/Λ^{2}\sim(0.6$-$1.6)\times10^{-11}\,\mathrm{GeV}^{-2}$, depending on the flavour and chiral structure of the operator, exceeding current limits by up to an order of magnitude. A combined analysis of multiple centre-of-mass energies and beam polarisations significantly improves the resolution of correlations among the Wilson coefficients. These results highlight the strong sensitivity of a future multi-TeV muon collider to charged lepton flavour violating four-lepton interactions, establishing it as a powerful probe of the SMEFT parameter space.
arXiv abstractPDF

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