arXiv · 2102.06262
Rare Kaon Decay to Missing Energy: Implications of the NA62 Result for a $Z^\prime$ Model
Abstract
Meson decays offer a good opportunity to probe new physics. The rare kaon decay $K^+ \rightarrow \pi^+ \nu\bar{\nu}$ is one of the cleanest of them and, for this reason, is rather sensitive to new physics, in particular, vector mediators. NA62 collaboration, running a fixed-target experiment at CERN, recently reported an unprecedented sensitivity to this decay, namely a branching fraction of $BR(K^+ \rightarrow \pi^+ \nu\bar{\nu}) = (11^{+4.0}_{-3.5})\times 10^{-11}$ at 68\% C.L. Vector mediators that couple to neutrinos may yield a sizeable contribution to this decay. Motivated by the new measurement, we interpret this result in the context of a concrete $Z^\prime$ model, and put our findings into perspective with the correlated $K_L \rightarrow \pi^0 \nu \bar{\nu}$ decay measured by KOTO collaboration, current, and future colliders, namely the High-Luminosity and High-Energy LHC.
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Téssio B. de Melo, Sergey Kovalenko, Farinaldo S. Queiroz, C. Siqueira, Yoxara S. Villamizar. 2021-02-11. Rare Kaon Decay to Missing Energy: Implications of the NA62 Result for a $Z^\prime$ Model. https://doi.org/10.1103/physrevd.103.115001
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