Standard Coupling Unification in SO(10), Hybrid Seesaw Neutrino Mass and Leptogenesis, Dark Matter, and Proton Lifetime Predictions
M. K. Parida, Bidyut Prava Nayak, Rajesh Satpathy (Siksha 'O', Anusandhan Univ.), Ram Lal Awasthi (IISER, Manauli)

TL;DR
This paper presents a comprehensive SO(10) grand unified model addressing neutrino masses, dark matter, and baryon asymmetry, with predictions for proton lifetime and gauge coupling unification.
Contribution
It introduces a novel SO(10) model with hybrid seesaw mechanism, matter parity conservation, and detailed leptogenesis and dark matter predictions.
Findings
Successful baryon asymmetry predictions for both RH neutrino mass patterns.
Natural embedding of TeV-scale triplet fermionic dark matter.
Proton lifetime predictions within experimental reach.
Abstract
We discuss gauge coupling unification of the SM descending directly from SO(10) while providing solutions to the three outstanding problems: neutrino masses, dark matter, and the baryon asymmetry of the universe. Conservation of matter parity as gauged discrete symmetry in the model calls for high-scale spontaneous symmetry breaking through Higgs representation. This naturally leads to the hybrid seesaw formula for neutrino masses mediated by heavy scalar triplet and right-handed neutrinos. The seesaw formula predicts two distinct patterns of RH masses, one hierarchical and another not so hierarchical (or compact) when fitted with the neutrino oscillation data. Predictions of the baryon asymmetry via leptogenesis are investigated through the decays of both the patterns of RH masses. A complete flavor analysis has been carried out to compute CP-asymmetries and…
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