English

Symmetric Teleparallel Gravity: Some exact solutions and spinor couplings

General Relativity and Quantum Cosmology 2016-08-14 v5

Abstract

In this paper we elaborate on the symmetric teleparallel gravity (STPG) written in a non-Riemannian spacetime with nonzero nonmetricity, but zero torsion and zero curvature. Firstly we give a prescription for obtaining the nonmetricity from the metric in a peculiar gauge. Then we state that under a novel prescription of parallel transportation of a tangent vector in this non-Riemannian geometry the autoparallel curves coincides with those of the Riemannian spacetimes. Subsequently we represent the symmetric teleparallel theory of gravity by the most general quadratic and parity conserving lagrangian with lagrange multipliers for vanishing torsion and curvature. We show that our lagrangian is equivalent to the Einstein-Hilbert lagrangian for certain values of coupling coefficients. Thus we arrive at calculating the field equations via independent variations. Then we obtain in turn conformal, spherically symmetric static, cosmological and pp-wave solutions exactly. Finally we discuss a minimal coupling of a spin-1/2 field to STPG.

Keywords

Cite

@article{arxiv.0810.2388,
  title  = {Symmetric Teleparallel Gravity: Some exact solutions and spinor couplings},
  author = {Muzaffer Adak and Özcan Sert and Mestan Kalay and Murat Sarı},
  journal= {arXiv preprint arXiv:0810.2388},
  year   = {2016}
}

Comments

Accepted for publication in the International Journal of Modern Physics A

R2 v1 2026-06-21T11:30:27.509Z