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Measuring tau neutrino appearance probability via unitarity

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arxiv 2109.06933 v2 pith:TWJXD5S7 submitted 2021-09-14 hep-ph hep-ex

Measuring tau neutrino appearance probability via unitarity

classification hep-ph hep-ex
keywords rightarrowneutrinoappearanceprobabilityunitarityanalysisdeterminationexperiments
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We propose a {\em unitarity method} for determining $\tau$ neutrino appearance probability $P(\nu_{\mu} \rightarrow \nu_{\tau})$ in long-baseline (LBL) accelerator experiments and atmospheric neutrino observations. When simultaneous in situ measurements of $P(\nu_{\mu} \rightarrow \nu_{\mu})$ and $P(\nu_{\mu} \rightarrow \nu_{e})$ proceed, as is typical in the LBL experiments, one can use unitarity to "measure" $P(\nu_{\mu} \rightarrow \nu_{\tau})$. A theorists' toy analysis for the model-independent determination of $P(\nu_{\mu} \rightarrow \nu_{\mu})$ and $P(\nu_{\mu} \rightarrow \nu_{e})$ is presented by using the NOvA data. It is shown in our analysis that $\lsim$5\% (8\%) measurement of $\tau$ neutrino appearance probability in neutrino (antineutrino) mode is possible in the peak region $1.5 \lesssim E_\nu \lesssim 2.5$ GeV. The $\nu$SM-independent nature of determination of the probabilities is emphasized.

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  1. Testing lepton non-unitarity with the next generation of Germanium-based CE$\nu$NS reactor experiments

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    A future 100-kg Germanium reactor CEνNS experiment could constrain lepton non-unitarity to 1−α11² ≈ 0.005 and, under low-scale seesaw assumptions, probe new-physics scales up to ~2.5 TeV.