Cosmological solutions in teleparallel gravity
arXiv:2411.18455 · doi:10.3390/sym17010060
Abstract
In this paper, we find several teleparallel solutions for a Robertson--Walker (TRW) cosmological spacetime. We first set and solve the -type field equations for a linear perfect fluid. Using similar techniques, we then find new solutions for non-linear perfect fluids with a weak quadratic correction term to the linear equation of state (EoS). Finally, we solve for new classes of solutions for a scalar field source by assuming a power-law scalar field and then an exponential scalar field in terms of the time coordinate. For flat cosmological cases ( cases), we find new exact and approximate solutions. For non-flat cases ( cases), we only find new teleparallel solutions for some specific and well-defined cosmological expansion subcases. We conclude by briefly discussing the impact of these new teleparallel solutions on cosmological processes such as dark energy (DE) quintessence and phantom energy models.
41 pages, no figure. Published in Symmetry
References in corpus (9)
- Cosmological Evolution of a Quintom Model of Dark Energy
- Dynamical behavior in cosmology
- Turnaround in Cyclic Cosmology
- Cosmological bouncing solutions in f(T,B) gravity
- Gravitoelectromagnetism, Solar System Test and Weak-Field Solutions in Gravity with Observational Constraints
- Spherically symmetric teleparallel geometries
- Teleparallel Robertson-Walker geometries and applications
- Kantowski-Sachs spherically symmetric solutions in teleparallel gravity
- Inhomogeneous solutions in gravity