Geodesic Deviation Equation in CDM gravity
arXiv:1601.02895 · doi:10.1007/s10773-016-3025-8
Abstract
The geodesic deviation equation has been investigated in the framework of gravity, where denotes the torsion and is the trace of the energy-momentum tensor, respectively. The FRW metric is assumed and the geodesic deviation equation has been established following the General Relativity approach in the first hand and secondly, by a direct method using the modified Friedmann equations. Via fundamental observers and null vector fields with FRW background, we have generalized the Raychaudhuri equation and the Mattig relation in gravity. Furthermore, we have numerically solved the geodesic deviation equation for null vector fields by considering a particular form of which induces interesting results susceptible to be tested with observational data.
20 pages, 2 figures
References in corpus (20)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- f(R,T) gravity
- Dark energy cosmology: the equivalent description via different theoretical models and cosmography tests
- Dark torsion as the cosmic speed-up
- Modified teleparallel gravity: inflation without inflaton
- Einstein's Other Gravity and the Acceleration of the Universe
- Good and bad tetrads in f(T) gravity
- FRW Cosmology in F(R,T) gravity
- Anisotropic Universe Models in f(T) Gravity
- Attractor Solutions in f(T) Cosmology
- Stability of a non-minimally conformally coupled scalar field in F(T) cosmology
- Resolution of dark matter problem in f(T) gravity
- Energy conditions in generalized teleparallel gravity models
- Notes on dark energy interacting with dark matter and unparticle in loop quantum cosmology
- Cylindrical Solutions in Modified f(T) Gravity
- Locally Rotationally Symmetric Bianchi Type-I cosmological model in gravity: from early to Dark Energy dominated universe
- Statefinder Analysis of f(T) Cosmology
- Cosmology of F(T) gravity and k-essence
- Geodesic Congruences in the Palatini f(R) Theory
- On tidal forces in f(R) theories of gravity