arXiv · 1412.1103
Small scale clustering of late forming dark matter
Abstract
We perform a study of the nonlinear clustering of matter in the late-forming dark matter (LFDM) scenario in which dark matter results from the transition of a nonminimally coupled scalar field from radiation to collisionless matter. A distinct feature of this model is the presence of a damped oscillatory cutoff in the linear matter power spectrum at small scales. We use a suite of high-resolution N-body simulations to study the imprints of LFDM on the nonlinear matter power spectrum, the halo mass and velocity functions and the halo density profiles. The model largely satisfies high-redshift matter power spectrum constraints from Lyman-$α$ forest measurements, while it predicts suppressed abundance of low-mass halos ($\sim 10^{9}-10^{10}$ h$^{-1}$ M$_\odot$) at all redshifts compared to a vanilla $Λ$CDM model. The analysis of the LFDM halo velocity function shows a better agreement than the $Λ$CDM prediction with the observed abundance of low-velocity galaxies in the local volume. Halos with mass $M\gtrsim 10^{11}$ h$^{-1}$ M$_\odot$ show minor departures of the density profiles from $Λ$CDM expectations, while smaller-mass halos are less dense, consistent with the fact that they form later than their $Λ$CDM counterparts.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Shankar Agarwal, Pier Stefano Corasaniti, Subinoy Das, Yann Rasera. 2015-08-27. Small scale clustering of late forming dark matter. https://doi.org/10.1103/physrevd.92.063502
Cite the original work for its findings. Save a collection to share your selection of sources.