Notes on teleparallel cosmology with nonminimally coupled scalar field
arXiv:1302.1180 · doi:10.1103/PhysRevD.87.064028
Abstract
We consider the spatially flat Friedmann-Lemaitre-Robertson-Walker space time in the teleparallel model of gravity and assume that the universe is filled nearly by cold dark matter and a nonminimally coupled scalar field with a power-law potential as dark energy. We investigate the possibility that the universe undergoes a transition from quintessence to phantom phase. An analytical solution for the scalar field is obtained and necessary conditions required for such a transition are discussed.
11 pages, 4 figures, discussions added, accepted for publication in Phys. Rev. D
References in corpus (16)
- Dynamics of dark energy
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Dark torsion as the cosmic speed-up
- Einstein's Other Gravity and the Acceleration of the Universe
- Generalized Second Law of Thermodynamics in Gravity with Entropy Corrections
- Translation of Einstein's Attempt of a Unified Field Theory with Teleparallelism
- Stability of a non-minimally conformally coupled scalar field in F(T) cosmology
- Future singularities and Teleparallelism in Loop Quantum Cosmology
- Transition from quintessence to phantom phase in quintom model
- Thermodynamics second law and crossing(s) in interacting holographic dark energy model
- Realistic cosmological scenario with non-minimal kinetic coupling
- Generalized Noether symmetry in f(T) gravity
- Late-time acceleration and Phantom Divide Line Crossing with Non-minimal Coupling and Lorentz Invariance Violation
- A new extended quintessence
- Scalar field cosmology in phase space
- Observational constraint in FRW cosmology with a nonminimal scalar field-matter coupling
Cited by in corpus (33)
- Teleparallel Theories of Gravity: Illuminating a Fully Invariant Approach
- gravity and cosmology
- Nonminimal torsion-matter coupling extension of f(T) gravity
- Viable f(T) models are practically indistinguishable from LCDM
- New Schwarzschild-like solutions in f(T) gravity through Noether symmetries
- Noether symmetries and analytical solutions in f(T)-cosmology: A complete study
- Dynamical features of scalar-torsion theories
- FRW in quadratic form of gravitational theories
- General relativity as an attractor for scalar-torsion cosmology
- Teleparallel dark energy model with a fermionic field via Noether symmetry
- Singularity Problem in Teleparallel Dark Energy Models
- Higgs inflation and teleparallel gravity
- Geodesic Deviation Equation in gravity
- A novel teleparallel dark energy model
- Noether Symmetries and Quantum Cosmology in Extended Teleparallel Gravity
- Elko and mass dimension one field of spin one half: causality and Fermi statistics
- Slow-roll inflation in generalized scalar-torsion gravity
- Equivalence of non-minimally coupled cosmologies by Noether symmetries
- Parametrized Post-Newtonian Limit of Teleparallel Dark Energy Model
- Symmetron and de Sitter attractor in a teleparallel model of cosmology
- Scalar-Tensor Teleparallel Gravity With Boundary Term by Noether Symmetries
- Nonminimally coupled scalar field in teleparallel gravity: boson stars
- Spherical collapse in the extended quintessence cosmological models
- Onset of acceleration in a Universe initially filled by dark and baryonic matters in nonminimally coupled teleparallel model
- Inflation with teleparallelism: Can torsion generate primordial fluctuations without local Lorentz symmetry?
- Reheating in a modified teleparallel model of inflation
- Evaporation phenomena in f(T) gravity
- Stability of symmetric teleparallel scalar-tensor cosmologies with alternative connections
- Asymptotic cosmological regimes in scalar-torsion gravity with a perfect fluid
- Interacting Quintessence in a New Scalar-Torsion Gravity
- f(T) Quantum Cosmology
- Late-time power-law stages of cosmological evolution in teleparallel gravity with nonminimal coupling
- Quantum cosmology in teleparallel gravity with a boundary term