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$ \mu-\tau $ Reflection Symmetry Embedded in Minimal Seesaw

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arxiv 1801.09931 v2 pith:EWVF4Z7X submitted 2018-01-30 hep-ph

classification hep-ph
keywords reflectionsymmetrybreakingneutrinoright-handedenergiesmassmatrix
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abstract

We embed $\mu-\tau$ reflection symmetry into the minimal seesaw formalism, where two right-handed neutrinos are added to the Standard Model of particle physics. Assuming that both the left- and right-handed neutrino fields transform under $\mu-\tau$ reflection symmetry, we obtain the required forms of the neutrino Dirac mass matrix and the Majorana mass matrix for the right-handed neutrinos. To investigate the neutrino phenomenology at low energies, we first consider the breaking of $\mu-\tau$ reflection symmetry due to the renormalization group running, and then systematically study various breaking schemes by introducing explicit breaking terms at high energies.

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  1. Electroweak right-handed neutrino portal dark matter

    hep-ph 2025-12 conditional novelty 5.0 of 10

    In neutrino-portal dark matter, ignoring internal dark-sector interactions during freeze-in can underestimate the final relic abundance by 30–95%.

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