arXiv · hep-ph/9701313
$K_L \to π^0 ν\bar ν$ Beyond the Standard Model
Abstract
We analyze the decay $K_L \to π^0 ν\bar ν$ in a model independent way. If lepton flavor is conserved the final state is (to a good approximation) purely CP even. In that case this decay mode goes mainly through CP violating interference between mixing and decay. Consequently, a theoretically clean relation between the measured rate and electroweak parameters holds in any given model. Specifically, $Γ(K_L \to π^0 ν\bar ν)/Γ(K^+ \to π^+ ν\bar ν)= \sin^2θ$ (up to known isospin corrections), where $θ$ is the relative CP violating phase between the $K-\bar K$ mixing amplitude and the $s\to dν\barν$ decay amplitude. The experimental bound on $BR(K^+ \to π^+ ν\bar ν)$ provides a model independent upper bound: $BR(K_L \to π^0 ν\bar ν) < 1.1 \times 10^{-8}$. In models with lepton flavor violation, the final state is not necessarily a CP eigenstate. Then CP conserving contributions can dominate the decay rate.
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Yuval Grossman, Yosef Nir. 1997-01-16. $K_L \to π^0 ν\bar ν$ Beyond the Standard Model. https://doi.org/10.1016/s0370-2693(97)00210-4
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