Constraining f(T) teleparallel gravity by Big Bang Nucleosynthesis
arXiv:1702.07952 · doi:10.1140/epjc/s10052-017-5143-8
Abstract
We use BBN observational data on primordial abundance of to constrain f(T) gravity. The three most studied viable models, namely the power law, the exponential and the square-root exponential are considered, and the BBN bounds are adopted in order to extract constraints on their free parameters. For the power-law model, we find that the constraints are in agreement with those acquired using late-time cosmological data. For the exponential and the square-root exponential models, we show that for realiable regions of parameters space they always satisfy the BBN bounds. We conclude that viable f(T) models can successfully satisfy the BBN constraints.
10 pages, 1 figure
References in corpus (22)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Big-Bang Nucleosynthesis
- Modified teleparallel gravity: inflation without inflaton
- Einstein's Other Gravity and the Acceleration of the Universe
- On Born-Infeld Gravity in Weitzenbock spacetime
- Cosmological perturbations in f(T) gravity
- The effects of He I 10830 on helium abundance determinations
- Observational constraints on theory
- f(T) gravity mimicking dynamical dark energy. Background and perturbation analysis
- models with phantom divide line crossing
- Degrees of freedom of gravity
- Growth factor in f(T) gravity
- Observational information for f(T) theories and Dark Torsion
- Nonminimal torsion-matter coupling extension of f(T) gravity
- Noether Symmetry Approach in teleparallel cosmology
- New observational constraints on f(T) gravity from cosmic chronometers
- Modified teleparallel theories of gravity -- Gauss-Bonnet and trace extensions
- Viability of the matter bounce scenario in Loop Quantum Cosmology for general potentials
- Dynamical system analysis for nonminimal torsion-matter coupled gravity
- The Cosmological Evolution of the Average Mass Per Baryon
- Interacting Quintessence in a New Scalar-Torsion Gravity
- Tomographic Representation of Minisuperspace Quantum Cosmology and Noether Symmetries
Cited by in corpus (52)
- Teleparallel Gravity: From Theory to Cosmology
- gravity
- Teleparallel Theories of Gravity: Illuminating a Fully Invariant Approach
- Weyl type gravity, and its cosmological implications
- Covariant formulation of scalar-torsion gravity
- New models and Big Bang Nucleosynthesis constraints in gravity
- Dynamical systems approach and generic properties of cosmology
- Updating constraints on f(T) teleparallel cosmology and the consistency with Big Bang Nucleosynthesis
- Primordial Gravitational Wave Signals in Modified Cosmologies
- Phase Portraits of general f(T) Cosmology
- Big Bang Nucleosynthesis constraints on higher-order modified gravities
- Model parameters in the context of late time cosmic acceleration in gravity
- Big Bang Nucleosynthesis and Entropy Evolution in Gravity
- Cosmology Intertwined: A Review of the Particle Physics, Astrophysics, and Cosmology Associated with the Cosmological Tensions and Anomalies
- Can models play a bridge between early and late time Universe?
- Gravitational baryogenesis in extended teleparallel theories of gravity
- Transit cosmological models with observational constraints in f(Q, T) gravity
- Big Bang Nucleosynthesis constraints on gravity
- Constraints on Tsallis Cosmology from Big Bang Nucleosynthesis and the Relic Abundance of Cold Dark Matter Particles
- New cosmological constraints on gravity in light of full Planck-CMB and type Ia supernovae data
- Primordial Big Bang Nucleosynthesis and Generalized Uncertainty Principle
- Constraining the Lorentz-Violating Bumblebee Vector Field with Big Bang Nucleosynthesis and Gravitational Baryogenesis
- Solving the tension in Gravity through Bayesian Machine Learning
- Investigating early and late-time epochs in gravity
- PeV IceCube signals and Dark Matter relic abundance in modified cosmologies
- gravity, and its cosmological implications
- BBN Constraints on Gravity
- Cosmic Growth in Teleparallel Gravity
- Preserving quantum information in cosmology
- The amplification of cosmological magnetic fields in Extended Teleparallel Gravity
- Early evolution of fully convective stars in scalar-tensor gravity
- Variational Problem and Bigravity Nature of Modified Teleparallel Theories
- Anisotropy effects on Baryogenesis in -Theories of Gravity
- Quadratic energy-momentum squared gravity: constraints from big bang nucleosynthesis
- The new higher-order generalized uncertainty principle and primordial big bang nucleosynthesis
- Barrow Cosmology and Big-Bang Nucleosynthesis
- Big Bang Nucleosynthesis constraints on the cosmological evolution in a Universe with a Weylian Boundary
- Constraining primordial black hole masses through gravity scalarons in Big Bang Nucleosynthesis
- Observational constraints on viscous cosmology in gravity
- Configurational entropy in gravity
- Baryon asymmetry from higher-order matter contributions in gravity
- BBN to Late-Time Acceleration in Gravity
- Qualitative behaviour of higher-curvature gravity with boundary terms i.e the f(Q) gravity models by dynamical system analysis
- Observational constraints and dynamical analysis of Kaniadakis horizon-entropy cosmology
- The general expression for in a charged cylindrical spacetime with diverse dimensions
- Cosmological Constraints on f(T,B) Gravity from Observations of Early and Late Universe
- Big Bang Nucleosynthesis constraints on gravity
- Constraining nonminimal f(T) gravity from Primordial Nucleosynthesis to Late-Universe observations
- Reconciling the ACT Preference in Gravity: Inflation and Reheating Constraints
- Constraining quantum fluctuations of spacetime foam from BBN
- Constraining Early Dark Energy cosmological models with Big Bang Nucleosynthesis
- Statistical physics on Euclidean Snyder space: connections with the GUP and cosmological implications