A Renormalizable Supersymmetric SU(5) Model
Jun-hui Zheng, Da-Xin Zhang

TL;DR
This paper introduces a renormalizable supersymmetric SU(5) unification model that incorporates the Georgi-Jarlsog mechanism for fermion masses and mixing, while also suppressing proton decay to align with experimental constraints.
Contribution
It presents a novel renormalizable supersymmetric SU(5) model with the Missing Partner Mechanism and Georgi-Jarlsog approach, improving fermion mass description and proton decay suppression.
Findings
Proton decay rates are suppressed to match experimental limits.
The model successfully describes fermion masses and mixing.
It maintains renormalizability within the supersymmetric SU(5) framework.
Abstract
In the Supersymmetric SU(5) Model of Unification with the Missing Partner Mechanism, we present a renormalizable model using the Georgi-Jarlsog mechanism to describe the fermion masses and mixing. At the meantime the proton decay rates are also suppressed to satisfy the experimental data.
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