f ( R , T ) gravity
University of Hong Kong · University of Lisbon · +3 more institutions
Abstract
We consider $f(R,T)$ modified theories of gravity, where the gravitational Lagrangian is given by an arbitrary function of the Ricci scalar $R$ and of the trace of the stress-energy tensor $T$. We obtain the gravitational field equations in the metric formalism, as well as the equations of motion for test particles, which follow from the covariant divergence of the stress-energy tensor. Generally, the gravitational field equations depend on the nature of the matter source. The field equations of several particular models, corresponding to some explicit forms of the function $f(R,T)$, are also presented. An important case, which is analyzed in detail, is represented by scalar field models. We write down the…
Citation impact
- FWCI
- 35.27
- Percentile
- 100%
- References
- 366
Authors
4- THTiberiu HarkoCorresponding
University of Hong Kong
- FSFrancisco S. N. Lobo
University of Hong Kong, University of Lisbon
- SNShin’ichi Nojiri
University of Hong Kong, Nagoya University
- SDSergei D. Odintsov
Institució Catalana de Recerca i Estudis Avançats, University of Hong Kong, Institute of Space Sciences
Topics & keywords
- Physics
- Mathematical physics
- Gravitation
- Geodesic
- Scalar curvature
- Gravitational field
- Scalar field
- Equations of motion