Mixing of Active and Sterile Neutrinos
Takehiko Asaka, Shintaro Eijima, Hiroyuki Ishida

TL;DR
This paper studies the mixing of active and sterile neutrinos in the νMSM, analyzing their effects on neutrinoless double beta decay and implications for direct searches of light sterile neutrinos in meson decays.
Contribution
It provides new insights into the suppression of electron neutrino mixing, the contributions of sterile neutrinos to neutrinoless double beta decay, and the potential for detecting light sterile neutrinos in meson decay experiments.
Findings
$ heta_{eI}$ can be significantly suppressed compared to $ heta_{,I}$ and $ heta_{,I}$ in certain hierarchies.
Sterile neutrinos with masses below a few hundred MeV can cause destructive interference in neutrinoless double beta decay.
Certain light sterile neutrinos may evade detection in some meson decay channels but be accessible via others like $K^+ o + N_{2,3}$.
Abstract
We investigate mixing of neutrinos in the MSM (neutrino Minimal Standard Model), which is the MSM extended by three right-handed neutrinos. Especially, we study elements of the mixing matrix between three left-handed neutrinos () and two sterile neutrinos () which are responsible to the seesaw mechanism generating the suppressed masses of active neutrinos as well as the generation of the baryon asymmetry of the universe (BAU). It is shown that can be suppressed by many orders of magnitude compared with and , when the Chooz angle is large in the normal hierarchy of active neutrino masses. We then discuss the neutrinoless double beta decay in this framework by taking into account the contributions not only from active neutrinos but also from all the three…
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