English

Flatland: abelian extensions of the Standard Model with semi-simple completions

High Energy Physics - Phenomenology 2022-10-19 v2 High Energy Physics - Theory

Abstract

We parametrise the space of all possible flavour non-universal u(1)X\mathfrak{u}(1)_X extensions of the Standard Model that embed inside anomaly-free semi-simple gauge theories, including up to three right-handed neutrinos. More generally, we parametrise all abelian extensions (i.e.) by any number of u(1)\mathfrak{u}(1)'s) of the SM with such semi-simple completions. The resulting space of abelian extensions is a collection of planes of dimensions 6\leq 6. Numerically, we find that roughly 2.5%2.5\% of anomaly-free u(1)X\mathfrak{u}(1)_X extensions of the SM with a maximum charge ratio of ±10\pm 10 can be embedded in such semi-simple gauge theories. Any vector-like anomaly-free abelian extension embeds (at least) inside g=su(12)su(2)Lsu(2)R\mathfrak{g} = \mathfrak{su}(12)\oplus \mathfrak{su}(2)_L\oplus \mathfrak{su}(2)_R. We also provide a simple computer program that tests whether a given u(1)X1u(1)X2\mathfrak{u}(1)_{X^1}\oplus \mathfrak{u}(1)_{X^2}\oplus \dots charge assignment has a semi-simple completion and, if it does, outputs a set of maximal gauge algebras in which the smu(1)X1u(1)X2\mathfrak{sm}\oplus\mathfrak{u}(1)_{X^1}\oplus \mathfrak{u}(1)_{X^2}\oplus \dots model may be embedded. We hope this is a useful tool in pointing the way from smu(1)X1u(1)X2\mathfrak{sm} \oplus\mathfrak{u}(1)_{X^1}\oplus \mathfrak{u}(1)_{X^2}\oplus \dots models, which have many phenomenological uses, to their unified gauge completions in the ultraviolet.

Keywords

Cite

@article{arxiv.2206.11271,
  title  = {Flatland: abelian extensions of the Standard Model with semi-simple completions},
  author = {Joe Davighi and Joseph Tooby-Smith},
  journal= {arXiv preprint arXiv:2206.11271},
  year   = {2022}
}

Comments

42 pages. v2: Matches published version