English

Toward a standard model 2, via Kaluza ansatz 2

General Physics 2012-06-28 v1

Abstract

New results and perspectives precipitate from the (modified as) Kaluza ansatz 2 (KA2), whereby, instead of appending nn Planck-scale (Lo{\rm L_o}) compact SL dimensions to ordinary 4D spacetime, one augments nn such dimensions by 3 large ones. By KA2, the fundamental role of gravity in the dynamics of vacuum geometry is being conceded to the remaining fundamental interactions. The ground state in KA2 is of the form Mˉn+4=Cˉn+1×\IR3\bar{\cal M}^{n+4}=\bar{\cal C}^{n+1}\times\IR^3, where the static (averaged-out over scales L>>Lo{\rm L}>>{\rm L_o}) Cˉn+1\bar{\cal C}^{n+1} carries {\em effective torsion} as relic of the deeper vacuum dynamics at Planck scale. For the simplest non-trivial implementation of KA2, the Bianchi IX subclass of SU(2)-invariant BIX4{\cal B}^4_{\rm IX} provides the Cˉ5=BˉM4×S1\bar{\cal C}^5=\bar{\cal B}^4_{\rm M}\times S^1, with the S1S^1 coming from 'augmentability', a complement to compactification. The classical action involves (i) the gravitational and EW sectors in elegant {\em hierarchy}, (ii) the {\em higgsless} emergence and full calculability of the EW gauge bosons masses and (iii) gravity as a necessarily effective field, hence non-quantizable. A conjectured Cn+1{\cal C}^{n+1} with n7n\leq 7 (to adjoin the strong interaction) toward a standard model 2, might also offer novel perspectives for supergravity.

Keywords

Cite

@article{arxiv.1206.6284,
  title  = {Toward a standard model 2, via Kaluza ansatz 2},
  author = {Nikolaos A. Batakis},
  journal= {arXiv preprint arXiv:1206.6284},
  year   = {2012}
}

Comments

8 pages

R2 v1 2026-06-21T21:26:25.642Z