On unitarity of a linearized Yang-Mills formulation for massless and massive gravity with propagating torsion
Abstract
A perturbative regime based on contortion as a dynamical variable and metric as a (classical) fixed background, is performed in the context of a pure Yang-Mills formulation for gravity in a dimensional space-time. In the massless case we show that the theory contains three degrees of freedom and only one is a non-unitary mode. Next, we introduce quadratical terms dependent on torsion, which preserve parity and general covariance. The linearized version reproduces an analogue Hilbert-Einstein-Fierz-Pauli unitary massive theory plus three massless modes, two of them represents non-unitary ones. Finally we confirm the existence of a family of unitary Yang-Mills-extended theories which are classically consistent with Einstein's solutions coming from non massive and topologically massive gravity. The unitarity of these YM-extended theories is shown in a perturbative regime. A possible way to perform a non-perturbative study is remarked.
Keywords
Cite
@article{arxiv.1009.0455,
title = {On unitarity of a linearized Yang-Mills formulation for massless and massive gravity with propagating torsion},
author = {Rolando Gaitan Deveras},
journal= {arXiv preprint arXiv:1009.0455},
year = {2010}
}
Comments
To appear in International Journal of Modern Physics A