Cannibalism hinders growth: Cannibal Dark Matter and the tension
arXiv:2008.08486 · doi:10.1088/1475-7516/2020/12/016
Abstract
Many models of dark matter have been proposed in attempt to ease the tension between weak lensing and CMB experiments. One such exciting possibility is cannibalistic dark matter (CanDM), which has exothermal number-changing interactions allowing it to stay warm far into its non-relativistic regime. Here we investigate the cosmological implications of CanDM and how it impacts CMB anisotropies and the matter power spectrum, by implementing the model within a linear Einstein-Boltzmann solver. We show that CanDM suppresses the small scale matter power spectrum in a way very similar to light Warm Dark Matter or Hot Dark Matter. However, unlike in those models, the suppression may happen while the CanDM model still remains compatible with CMB constraints. We put strong constraints on the interaction strength of CanDM as a function of its abundance for both constant and temperature-dependent thermally-averaged cross sections. We find that the CanDM model can easily solve the tension (but has no impact on the Hubble tension). Indeed, it can accommodate values of of the order of 0.76 while being compatible with CMB+BAO data. However, as long as the tension remains moderate, the overall improvement is relatively small given the number of extra free parameters, and the CanDM model is not significantly preferred.
28 pages, 14 figures, 2 tables. Comments are welcome (we don't bite)
References in corpus (8)
- The Clustering of the SDSS DR7 Main Galaxy Sample I: A 4 per cent Distance Measure at z=0.15
- Too big to fail? The puzzling darkness of massive Milky Way subhaloes
- The effects of He I 10830 on helium abundance determinations
- Interacting Dark Sector and Precision Cosmology
- KiDS+VIKING-450 and DES-Y1 combined: Mitigating baryon feedback uncertainty with COSEBIs
- The synergy between CMB spectral distortions and anisotropies
- Self-interacting Spin-2 Dark Matter
- Robustness of cosmic neutrino background detection in the cosmic microwave background
Cited by in corpus (30)
- The Olympics: A fair ranking of proposed models
- Cosmology Intertwined III: and
- Arbitrating the discrepancy with growth rate measurements from Redshift-Space Distortions
- Dark Energy at early times and ACT: a larger Hubble constant without late-time priors
- How warm are non-thermal relics? Lyman- bounds on out-of-equilibrium dark matter
- Relaxing cosmological tensions with a sign switching cosmological constant: Improved results with Planck, BAO, and Pantheon data
- Revealing the effects of curvature on the cosmological models
- Neural Network Reconstruction of Late-Time Cosmology and Null Tests
- Scalar Dark Matter Production from Preheating and Structure Formation Constraints
- Turn up the volume: Listening to phase transitions in hot dark sectors
- Stepped Partially Acoustic Dark Matter, Large Scale Structure, and the Hubble Tension
- Confronting interacting dark radiation scenarios with cosmological data
- The Cosmological Evolution of Self-interacting Dark Matter
- Minimal theory of massive gravity in the light of CMB data and the tension
- Cannibalism's lingering imprint on the matter power spectrum
- A Model of Interacting Dark Matter and Dark Radiation for and Tensions
- Towards alleviating the and tensions with Early Dark Energy - Dark Matter drag
- The Milky Way, Coming into Focus: Precision Astrometry Probes its Evolution, and its Dark Matter
- Probing the two-body decaying dark matter scenario with weak lensing and the cosmic microwave background
- Hidden Dark Matter from Starobinsky Inflation
- Extragalactic CO emission lines in the CMB experiments: a forgotten signal and a foreground
- Cannibal dark matter decoupled from standard model: cosmological constraints
- Euclid and KiDS-1000: Quantifying the impact of source-lens clustering on cosmic shear analyses
- Halo Growth and Merger Rates as a Cosmological Test
- Self-Interacting Dark Matter in Cosmology: accurate numerical implementation and observational constraints
- Freezing-in Cannibal Dark Sectors
- Kinetic recoupling of dark matter
- Cosmological implications of inflaton-mediated dark and visible matter scatterings after reheating
- A frequentist view on the two-body decaying dark matter model
- Constraining decaying dark matter with BOSS data and the effective field theory of large-scale structures