A Universe Without Dark Energy: Cosmic Acceleration from Dark Matter-Baryon Interactions
arXiv:1612.00453 · doi:10.1103/PhysRevD.95.123530
Abstract
Cosmic acceleration is widely believed to require either a source of negative pressure (i.e., dark energy), or a modification of gravity, which necessarily implies new degrees of freedom beyond those of Einstein gravity. In this paper we present a third possibility, using only dark matter and ordinary matter. The mechanism relies on the coupling between dark matter and ordinary matter through an effective metric. Dark matter couples to an Einstein-frame metric, and experiences a matter-dominated, decelerating cosmology up to the present time. Ordinary matter couples to an effective metric that depends also on the DM density, in such a way that it experiences late-time acceleration. Linear density perturbations are stable and propagate with arbitrarily small sound speed, at least in the case of `pressure' coupling. Assuming a simple parametrization of the effective metric, we show that our model can successfully match a set of basic cosmological observables, including luminosity distance, BAO measurements, angular-diameter distance to last scattering {\it etc.} For the growth history of density perturbations, we find an intriguing connection between the growth factor and the Hubble constant. To get a growth history similar to the CDM prediction, our model predicts a higher , closer to the value preferred by direct estimates. On the flip side, we tend to overpredict the growth of structures whenever is comparable to the Planck preferred value. The model also tends to predict larger redshift-space distortions at low redshift than CDM.
34 pages
References in corpus (13)
- Dynamics of dark energy
- Cosmology and the Fate of Dilatation Symmetry
- Ultralight scalars as cosmological dark matter
- Beyond the Cosmological Standard Model
- The trouble with
- The clustering of galaxies in the completed SDSS-III Baryon Oscillation Spectroscopic Survey: Baryon Acoustic Oscillations in Fourier-space
- The quantum mechanics of perfect fluids
- Cosmological constraints on a decomposed Chaplygin gas
- Are galaxies extending?
- Triple unification of inflation, dark matter, and dark energy using a single field
- Dark Matter Superfluidity
- The Abnormally Weighting Energy Hypothesis: the Missing Link between Dark Matter and Dark Energy
- Construction of the Conserved Non-linear Zeta via the Effective Action for Perfect Fluids
Cited by in corpus (18)
- Implications of the Neutron Star Merger GW170817 for Cosmological Scalar-Tensor Theories
- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics
- A local resolution of the Hubble tension: The impact of screened fifth forces on the cosmic distance ladder
- The Novel Probes Project -- Tests of Gravity on Astrophysical Scales
- Knotted solutions, from electromagnetism to fluid dynamics
- An Ultralight Axion in Supersymmetry and Strings and Cosmology at Small Scales
- Unified Superfluid Dark Sector
- Late time acceleration due to generic modification of gravity and Hubble tension
- Screened Fifth Forces Mediated by Dark Matter-Baryon Interactions: Theory and Astrophysical Probes
- Knotted solutions for linear and nonlinear theories: electromagnetism and fluid dynamics
- Modified Gravity and the Black Hole Mass Gap
- The Oscillatory Universe, phantom crossing and the Hubble tension
- Conformal Killing cosmology -- Geometry, dark sector, growth of structures, and big rip
- Cosmic acceleration from coupling of baryonic and dark matter components: Analysis and diagnostics
- Particle-vortex duality and theta terms in AdS/CMT applications
- Dark Coincidences: Small-Scale Solutions with Refracted Gravity and MOND
- Self-acceleration in scalar-bimetric theories
- Refracted Gravity Solutions from Small to Large Scales