English

A Superconnection for Riemannian Gravity as Spontaneously Broken SL(4,R) Gauge Theory

High Energy Physics - Theory 2011-07-19 v1

Abstract

A superconnection is a supermatrix whose even part contains the gauge-potential one-forms of a local gauge group, while the odd parts contain the (0-form) Higgs fields; the combined grading is thus odd everywhere. We demonstrate that the simple supergroup Pˉ(4,R){\bar P}(4,R) (rank=3) in Kac' classification (even subgroup SLˉ(4,R)\bar {SL}(4,R)) prverline {SL}(4,R))providesforthemosteconomicalspontaneousbreakingof) provides for the most economical spontaneous breaking of \bar{SL}(4,R)asgaugegroup,leavingjustlocal as gauge group, leaving just local \bar{SO}(1,3)$ unbroken. As a result, post-Riemannian SKY gravity yields Einstein's theory as a low-energy (longer range) effective theory. The theory is renormalizable and may be unitary.

Keywords

Cite

@article{arxiv.hep-th/9708052,
  title  = {A Superconnection for Riemannian Gravity as Spontaneously Broken SL(4,R) Gauge Theory},
  author = {Yuval Ne'eman},
  journal= {arXiv preprint arXiv:hep-th/9708052},
  year   = {2011}
}

Comments

11 pages, latex