English

An economical model for $B$-flavour and $a_\mu$ anomalies from SO(10) grand unification

High Energy Physics - Phenomenology 2024-10-01 v3

Abstract

We investigate an SO(10)\mathrm{SO}(10) grand unification scenario where the complex 10-dimensional scalar multiplet, containing the Standard Model (SM) Higgs boson, resides at the TeV scale altogether. The resulting low-energy model is a 2-Higgs-doublet model augmented with two S1S_1-type leptoquarks. The gauge-coupling unification is achieved with only one intermediate scale at which the Pati-Salam gauge group is broken down to the SM. Proton stability is ensured by a discrete symmetry, leftover from the breaking of the U(1)PQ_{\mathrm{PQ}} global symmetry. The axion corresponding to this broken U(1)PQ_{\mathrm{PQ}} provides a solution to the strong CP problem, and also serves as an important dark matter candidate. We discuss how the simultaneous explanation for the RD()R_{D^{(*)}} and aμa_\mu anomalies comes about in the model, and investigate some of its phenomenological implications.

Keywords

Cite

@article{arxiv.2209.04705,
  title  = {An economical model for $B$-flavour and $a_\mu$ anomalies from SO(10) grand unification},
  author = {Ufuk Aydemir and Tanumoy Mandal and Subhadip Mitra and Shoaib Munir},
  journal= {arXiv preprint arXiv:2209.04705},
  year   = {2024}
}

Comments

20 pages, 4 figures, 5 tables. Significant improvements in the text and results, which are now based on the latest data for the $a_\mu$ and $R_{D^{(*)}}$ anomalies. A thorough explanation of the validity of the low-energy model through RGE running of the Yukawa couplings has also been included