Covariant formulation of refracted gravity
arXiv:2109.11217 · doi:10.1051/0004-6361/202243553
Abstract
We propose a covariant formulation of refracted gravity (RG), a classical theory of gravity based on the introduction of gravitational permittivity (GP), a monotonic function of the local mass density, in the standard Poisson equation. GP mimics dark matter (DM) phenomenology. The covariant formulation of RG (CRG) that we propose belongs to the class of scalar-tensor theories, where the scalar field has a self-interaction potential , with a normalization constant. We show that is twice the GP in the weak-field limit. Far from a spherical source of density , the transition between the Newtonian and the RG regime appears below the acceleration scale , with , being an isotropic and homogeneous background. In the limit , we obtain ~m~s. This is comparable to the acceleration originally introduced in MOND. From CRG, we also derived the modified Friedmann equations for an expanding, homogeneous, and isotropic universe. We find that the same scalar field that mimics DM also drives the accelerated expansion of the Universe. From the stress-energy tensor of , we derived the equation of state of a redshift-dependent effective dark energy (DE) . Current observational constraints on and distance modulus data of SNIa suggest that has a comparable value to the cosmological constant in the standard model. CRG, therefore, suggests a natural explanation of the known relation and appears to describe both the dynamics of cosmic structure and the expanding Universe with a single scalar field, highlighting a possible deep connection between phenomena currently attributed to DM and DE separately.
16 pages, 6 appendices, 3 figures, matches the accepted version in A&A
References in corpus (39)
- Dynamics of dark energy
- Dark energy cosmology: the equivalent description via different theoretical models and cosmography tests
- A direct empirical proof of the existence of dark matter
- Large Magellanic Cloud Cepheid Standards Provide a 1% Foundation for the Determination of the Hubble Constant and Stronger Evidence for Physics Beyond LambdaCDM
- Spectra and Light Curves of Six Type Ia Supernovae at 0.511 < z < 1.12 and the Union2 Compilation
- Beyond the Cosmological Standard Model
- Implications of the Neutron Star Merger GW170817 for Cosmological Scalar-Tensor Theories
- Healthy theories beyond Horndeski
- The Radial Acceleration Relation in Rotationally Supported Galaxies
- Planck evidence for a closed Universe and a possible crisis for cosmology
- Horndeski theory and beyond: a review
- Echoes of ECOs: gravitational-wave signatures of exotic compact objects and of quantum corrections at the horizon scale
- Primordial Nucleosynthesis: from precision cosmology to fundamental physics
- The Universal Rotation Curve of Spiral Galaxies. II The Dark Matter Distribution out to the Virial Radius
- No-ghost theorem for the fourth-order derivative Pais-Uhlenbeck oscillator model
- Gravitational wave searches for ultralight bosons with LIGO and LISA
- Dark Energy: the equation of state description versus scalar-tensor or modified gravity
- Too Big to Fail in the Local Group
- Equivalence of the Einstein and Jordan frames
- MOND theory
- Lectures on the Cosmological Constant Problem
- Observational constraints on the linear fluctuation growth rate
- Selected topics in scalar-tensor theories and beyond
- Gravitational polarization and the phenomenology of MOND
- Emergent Gravity Paradigm: Recent Progress
- On Larger Values in the CMB Dipole Direction
- A statistical investigation of the mass discrepancy-acceleration relation
- Dark matters on the scale of galaxies
- Theory of gravitation theories: a no-progress report
- Unified Dark Matter Scalar Field Models
- Predictions and Outcomes for the Dynamics of Rotating Galaxies
- Effective Fluid Description of the Dark Universe
- GW170817/GRB 170817A/AT2017gfo association: some implications for physics and astrophysics
- Dynamics and cosmological constraints on Brans-Dicke cosmology
- Galactic dynamics and long-range quantum gravity
- MOND and the Universal Rotation Curve: similar phenomenologies
- On the Presence of a Universal Acceleration Scale in Elliptical Galaxies
- Testing MOND with Local Group spiral galaxies
- X-ray clusters of galaxies in conformal gravity
Cited by in corpus (4)
- Structure of the equivalent Newtonian systems in MOND N-body simulations. Density profiles and the core-cusp problem
- Dark Coincidences: Small-Scale Solutions with Refracted Gravity and MOND
- Testing Refracted Gravity with kinematics of galaxy clusters
- Refracted Gravity Solutions from Small to Large Scales