In the conventional formulation of general relativity, gravity is represented by the metric curvature of Riemannian geometry. There are also alternative formulations in flat affine geometries, wherein the gravitational dynamics is instead described by torsion and nonmetricity. These so called general teleparallel geometries may also have applications in material physics, such as the study of crystal defects. In this work, we explore the general teleparallel geometry in the language of differential forms. We discuss the special cases of metric and symmetric teleparallelisms, clarify the relations between formulations with different gauge fixings and without gauge fixing, and develop a method of recasting Riemannian into teleparallel geometri...
We study symmetric teleparallel (STP) gravity model, in which only spacetime non-metricity is nonzer...
A 2D symmetric teleparallel gravity model is given by a generic 4-parameter action that is quadratic...
In this paper, we elaborate on the symmetric teleparallel gravity (STPG) written in a non-Riemannian...
General relativity can be presented in terms of other geometries besides Rieman-nian. In particular,...
In this Letter we consider a general quadratic parity-preserving theory for a general flat connectio...
Teleparallel gravity models, in which the curvature and the nonmetricity of spacetime are both set z...
Teleparallel and symmetric teleparallel gravity offer platforms in which gravity can be formulated i...
General relativity can be presented in terms of other geometries besides Riemannian. In particular, ...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
We discuss equivalent representations of gravity in the framework of metric-affine geometries pointi...
We develop a symmetric teleparallel gravity model in a space-time with only the nonmetricity as nonz...
In general relativity (GR), the metric tensor of spacetime is essential since it represents the grav...
We construct a theory in which the gravitational interaction is described only by torsion, but that ...
We discuss a gauge invariant gravity model in a non-Riemannian geometry in which the curvature and t...
In this paper, we elaborate on the symmetric teleparallel gravity (STPG) written in a non-Riemannian...
We study symmetric teleparallel (STP) gravity model, in which only spacetime non-metricity is nonzer...
A 2D symmetric teleparallel gravity model is given by a generic 4-parameter action that is quadratic...
In this paper, we elaborate on the symmetric teleparallel gravity (STPG) written in a non-Riemannian...
General relativity can be presented in terms of other geometries besides Rieman-nian. In particular,...
In this Letter we consider a general quadratic parity-preserving theory for a general flat connectio...
Teleparallel gravity models, in which the curvature and the nonmetricity of spacetime are both set z...
Teleparallel and symmetric teleparallel gravity offer platforms in which gravity can be formulated i...
General relativity can be presented in terms of other geometries besides Riemannian. In particular, ...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
We discuss equivalent representations of gravity in the framework of metric-affine geometries pointi...
We develop a symmetric teleparallel gravity model in a space-time with only the nonmetricity as nonz...
In general relativity (GR), the metric tensor of spacetime is essential since it represents the grav...
We construct a theory in which the gravitational interaction is described only by torsion, but that ...
We discuss a gauge invariant gravity model in a non-Riemannian geometry in which the curvature and t...
In this paper, we elaborate on the symmetric teleparallel gravity (STPG) written in a non-Riemannian...
We study symmetric teleparallel (STP) gravity model, in which only spacetime non-metricity is nonzer...
A 2D symmetric teleparallel gravity model is given by a generic 4-parameter action that is quadratic...
In this paper, we elaborate on the symmetric teleparallel gravity (STPG) written in a non-Riemannian...