English

Fourth Generation fermions as candidates for Dark Matter

General Physics 2026-03-04 v7

Abstract

Clifford Unification describes all the observed fundamental fermions in terms of seven commuting elements of the Cl7,7Cl_{7,7} Clifford algebra. The eigenvalues of each commuting element define a binary quantum number, which relates to a fermion property that is conserved in decays and interactions. These include the quantum number descriptions of a hitherto unobserved fourth generation G(4) of fermions, which are predicted to have electric charges different to their observed G(1-3) counterparts. This, together with quantum number conservation, eliminates the possibility of interactions between G(4) and G(1-3) fermions. Neutral G(4) composites are shown to provide candidates for baryonic Dark Matter, which is identified with the super-massive cores of galaxies. This could be examined in the light of recent observations of 'Little Red Dots' in the early Universe. Neutral leptonic G(4) composites provide candidates for the Dark Matter component of galactic halos.

Keywords

Cite

@article{arxiv.2201.13238,
  title  = {Fourth Generation fermions as candidates for Dark Matter},
  author = {Douglas Newman},
  journal= {arXiv preprint arXiv:2201.13238},
  year   = {2026}
}

Comments

8 pages. Details of G(4) fermion charge calculation have been improved. New discussion of neutral composites is given

R2 v1 2026-06-24T09:10:48.440Z