Improving lepton flavour universality tests with $K_L$ decays
Rare kaon decays provide sensitive probes of the flavour structure of the Standard Model and of possible new physics. We perform a global analysis incorporating recent experimental results and updated Standard Model predictions, including the latest measurement of $K^+ \to π^+ ν\barν$ and lepton flavour universality observables in $K^+ \to π^+ \ell^+\ell^-$. The fit favours a best-fit point close to the Standard Model, while a second local minimum remains phenomenologically relevant. We define benchmark scenarios associated with these two regions and investigate the prospective sensitivity of NA62 and KOTO-II to the new physics parameter space. We consider projected measurements of $K^+ \to π^+ ν\barν$ and lepton flavour universality observables in $K^+ \to π^+ \ell^+\ell^-$ at NA62, and of $K_L \to π^0 ν\barν$, $K_L \to π^0 e^+e^-$, and $K_L \to π^0 μ^+μ^-$ at KOTO-II. We find that KOTO-II has significant potential to probe and discriminate between the viable new physics scenarios, with NA62 providing complementary sensitivity.
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