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Axion Dark Matter, Proton Decay and Unification
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abstract
We discuss the possibility to predict the QCD axion mass in the context of grand unified theories. We investigate the implementation of the DFSZ mechanism in the context of renormalizable SU(5) theories. In the simplest theory, the axion mass can be predicted with good precision in the range $m_a = (2-16)$ neV, and there is a strong correlation between the predictions for the axion mass and proton decay rates. In this context, we predict an upper bound for the proton decay channels with antineutrinos, $\tau(p\to K^+ \bar{\nu}) \lesssim 4 \times 10^{37} \text{ yr}$ and $\tau(p \to \pi^+ \bar{\nu}) \lesssim 2 \times 10^{36}\text{ yr}$. This theory can be considered as the minimal realistic grand unified theory with the DFSZ mechanism and it can be fully tested by proton decay and axion experiments.
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Cited by 1 Pith paper
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A High-Quality Composite Pati-Salam Axion
A new composite axion model in which the Pati-Salam gauge group emerges from strong dynamics, yielding a high-quality accidental PQ symmetry and a fixed axion-photon coupling ratio E/N = -7/3.
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