Breaking cosmic degeneracies: Disentangling neutrinos and modified gravity with kinematic information
arXiv:1902.01868 · doi:10.1051/0004-6361/201935213
Abstract
Searches for modified gravity in the large-scale structure try to detect the enhanced amplitude of density fluctuations caused by the fifth force present in many of these theories. Neutrinos, on the other hand, suppress structure growth below their free-streaming length. Both effects take place on comparable scales, and uncertainty in the neutrino mass leads to a degeneracy with modified gravity parameters for probes that are measuring the amplitude of the matter power spectrum. We explore the possibility to break the degeneracy between modified gravity and neutrino effects in the growth of structures by considering kinematic information related to either the growth rate on large scales or the virial velocities inside of collapsed structures. In order to study the degeneracy up to fully non-linear scales, we employ a suite of -body simulations including both modified gravity and massive neutrinos. Our results indicate that velocity information provides an excellent tool to distinguish massive neutrinos from modified gravity. Models with different values of neutrino masses and modified gravity parameters possessing a comparable matter power spectrum at a given time have different growth rates. This leaves imprints in the velocity divergence, which is therefore better suited than the amplitude of density fluctuations to tell the models apart. In such models with a power spectrum comparable to CDM today, the growth rate is strictly enhanced. We also find the velocity dispersion of virialised clusters to be well suited to constrain deviations from general relativity without being affected by the uncertainty in the sum of neutrino masses.
8 pages, 4 figures, submitted to A&A
References in corpus (17)
- Large Magellanic Cloud Cepheid Standards Provide a 1% Foundation for the Determination of the Hubble Constant and Stronger Evidence for Physics Beyond LambdaCDM
- Models of f(R) Cosmic Acceleration that Evade Solar-System Tests
- On the efficiency and reliability of cluster mass estimates based on member galaxies
- Cluster Constraints on f(R) Gravity
- Dynamical Masses in Modified Gravity
- Cross-correlation Weak Lensing of SDSS Galaxy Clusters I: Measurements
- Cosmology Based on f(R) Gravity Admits 1 eV Sterile Neutrinos
- Breaking degeneracies in modified gravity with higher (than 2nd) order weak-lensing statistics
- Weak Lensing Light-Cones in Modified Gravity simulations with and without Massive Neutrinos
- Distinguishing standard and modified gravity cosmologies with machine learning
- The Vainshtein Mechanism in the Cosmic Web
- Joint halo mass function for modified gravity and massive neutrinos I: simulations and cosmological forecasts
- Large-scale redshift space distortions in modified gravity theories
- On the dissection of degenerate cosmologies with machine learning
- The kinematic Sunyaev-Zel'dovich effect of the large-scale structure (II): the effect of modified gravity
- Probing modified gravity in cosmic filaments
- Degeneracies between Modified Gravity and Baryonic Physics
Cited by in corpus (11)
- Cosmic voids in modified gravity models with massive neutrinos
- Cosmic voids in modified gravity scenarios
- Reconstruction of the neutrino mass as a function of redshift
- Phase space analysis and singularity classification for linearly interacting dark energy models
- Neutrino effects on the morphology of cosmic large-scale structure
- Dark Matter Halo Sparsity of Modified Gravity Scenarios
- Euclid preparation. Modelling spectroscopic clustering on mildly nonlinear scales in beyond-CDM models
- Neutrino mass and kinetic gravity braiding degeneracies
- Euclid: Constraints on f(R) cosmologies from the spectroscopic and photometric primary probes
- Breaking the cosmological invariance of the dark matter halos shape as a new probe of modified gravity
- An Anti-halo Void Catalogue of the Local Super-Volume