English

Charge Quantization and the Standard Model from the $\mathbb{CP}^2$ and $\mathbb{CP}^3$ Nonlinear $\sigma$-Models

High Energy Physics - Theory 2014-03-05 v2 High Energy Physics - Phenomenology

Abstract

We investigate charge quantization in the Standard Model (SM) through a CP2\mathbb{CP}^2 nonlinear sigma model (NLSM), SU(3)G/(SU(2)H×U(1)H)SU(3)_G/(SU(2)_H \times U(1)_H), and a CP3\mathbb{CP}^3 model, SU(4)G/(SU(3)H×U(1)H)SU(4)_G/(SU(3)_H \times U(1)_H). We also generalize to any CPk\mathbb{CP}^k model. Charge quantization follows from the consistency and dynamics of the NLSM, without a monopole or Grand Unified Theory, as shown in our earlier work on the CP1\mathbb{CP}^1 model (arXiv:1309.0692). We find that representations of the matter fields under the unbroken non-abelian subgroup dictate their charge quantization under the U(1)HU(1)_H factor. In the CP2\mathbb{CP}^2 model the unbroken group is identified with the weak and hypercharge groups of the SM, and the Nambu-Goldstone boson (NGB) has the quantum numbers of a SM Higgs. There is the intriguing possibility of a connection with the vanishing of the Higgs self-coupling at the Planck scale. Interestingly, with some minor assumptions (no vector-like matter and minimal representations) and starting with a single quark doublet, anomaly cancellation requires the matter structure of a generation in the SM. Similar analysis holds in the CP3\mathbb{CP}^3 model, with the unbroken group identified with QCD and hypercharge, and the NGB having the up quark as a partner in a supersymmetric model. This can motivate solving the strong CP problem with a vanishing up quark mass.

Keywords

Cite

@article{arxiv.1312.6889,
  title  = {Charge Quantization and the Standard Model from the $\mathbb{CP}^2$ and $\mathbb{CP}^3$ Nonlinear $\sigma$-Models},
  author = {Simeon Hellerman and John Kehayias and Tsutomu T. Yanagida},
  journal= {arXiv preprint arXiv:1312.6889},
  year   = {2014}
}

Comments

6 pages; v2: additional references, minor clarifications on nonlinear models, matches published version

R2 v1 2026-06-22T02:34:48.876Z