arXiv Analytics

Sign in

arXiv:2303.10887 [astro-ph.CO]AbstractReferencesReviewsResources

Physical evolution of dark matter halo around the depletion boundary

Hongyu Gao, Jiaxin Han, Matthew Fong, Y. P. Jing, Zhaozhou Li

Published 2023-03-20Version 1

We investigate the build-up of the halo profile out to large scale in a cosmological simulation, focusing on the roles played by the recently proposed depletion radii. We explicitly show that halo growth is accompanied by the depletion of the environment, with the inner depletion radius demarcating the two. This evolution process is also observed via the formation of a trough in the bias profile, with the two depletion radii identifying key scales in the evolution. The ratio between the inner depletion radius and the virial radius is approximately a constant factor of 2 across redshifts and halo masses. The ratio between their enclosed densities is also close to a constant of 0.18. These simple scaling relations reflect the largely universal scaled mass profile on these scales, which only evolves weakly with redshift. The overall picture of the boundary evolution can be broadly divided into three stages according to the maturity of the depletion process, with cluster halos lagging behind low mass ones in the evolution. We also show that the traditional slow and fast accretion dichotomy of halo growth can be identified as accelerated and decelerated depletion phases respectively.

Related articles: Most relevant | Search more
arXiv:1301.2330 [astro-ph.CO] (Published 2013-01-10)
The velocity function of dark matter halos at r=20 kpc: Remarkably little evolution since z ~ 4
arXiv:2407.09282 [astro-ph.CO] (Published 2024-07-12)
Secondary bias through cosmic time II: Reconstructing halo properties using clustering information
arXiv:2407.08030 [astro-ph.CO] (Published 2024-07-10)
Dynamics of the response of dark matter halo to galaxy evolution in IllustrisTNG