English

Yang Mills Theory of Gravity

General Physics 2021-06-22 v2 General Relativity and Quantum Cosmology

Abstract

The canonical formulation of general relativity is based on decomposition space--time manifold MM into R×Σ R\times \Sigma, this decomposition has to preserve the invariance of general relativity, invariance under general coordinates, and local Lorentz transformations. These symmetries associate with conserved currents that are coupled to gravity. In this paper, we try to solve the equations of motion of general relativity in self-dual formalism using only the spin currents(Lorentz currents), in static case, and without needing using the Einstein's equation, that makes the general relativity similar to Yang-Mills theory of gauge fields. We give an example, matter located at a point, so we have spherical symmetric system. Then we add Yang--Mills Lagrangian to general relativity Lagrangian. Finally we use the decomposition of the space--time manifold M=R×ΣM=R\times \Sigma to find that Σi0a\Sigma^{0a}_i is a conjugate momentum of AaiA^{i}_a and ΣiabFabi\Sigma^{ab}_i F_{ab}^i is energy density.

Keywords

Cite

@article{arxiv.1911.10904,
  title  = {Yang Mills Theory of Gravity},
  author = {Malik Matwi},
  journal= {arXiv preprint arXiv:1911.10904},
  year   = {2021}
}

Comments

v2 includes some corrections to the published paper