Nonmetricity formulation of general relativity and its scalar-tensor extension
Abstract
Einstein's celebrated theory of gravitation can be presented in three forms: general relativity, teleparallel gravity, and the rarely considered before symmetric teleparallel gravity. Extending the latter, we introduce a new class of theories where a scalar field is coupled nonminimally to nonmetricity , which here encodes the gravitational effects like curvature in general relativity or torsion in teleparallel gravity. We point out the similarities and differences with analogous scalar-curvature and scalar-torsion theories by discussing the field equations, role of connection, conformal transformations, relation to theory, and cosmology. The equations for spatially flat universe coincide with those of teleparallel dark energy, thus allowing to explain accelerating expansion.
Keywords
Cite
@article{arxiv.1802.00492,
title = {Nonmetricity formulation of general relativity and its scalar-tensor extension},
author = {Laur Järv and Mihkel Rünkla and Margus Saal and Ott Vilson},
journal= {arXiv preprint arXiv:1802.00492},
year = {2018}
}
Comments
7 pages, 2 figures, REVTeX, clarifications and references added, version accepted for publication in PRD