Teleparallel Conformal Invariant Models induced by Kaluza-Klein Reduction
Abstract
We study the extensions of teleparallism in the Kaluza-Klein (KK) scenario by writing the analogous form to the torsion scalar in terms of the corresponding antisymmetric tensors, given by , in the four-dimensional New General Relativity (NGR) with arbitrary coefficients , and . After the KK dimensional reduction, the Lagrangian in the Einstein-frame can be realized by taking with the ghost-free condition for the one-parameter family of teleparallelism. We demonstrate that the pure conformal invariant gravity models can be constructed by the requirements of and . In particular, the torsion vector can be identified as the conformal gauge field, while the conformal gauge theory can be obtained by or , which is described on the Weyl-Cartan geometry with the ghost-free conditions and . We also consider the weak field approximation and discuss the non-minimal coupled term of the scalar current and torsion vector. For the conformal invariant models with , we find that only the anti-symmetric tensor field is allowed rather than the symmetric one.
Cite
@article{arxiv.1612.00166,
title = {Teleparallel Conformal Invariant Models induced by Kaluza-Klein Reduction},
author = {Chao-Qiang Geng and Ling-Wei Luo},
journal= {arXiv preprint arXiv:1612.00166},
year = {2017}
}
Comments
23 pages, 1 figure, revised version accepted by Classical and Quantum Gravity