LCDM halo substructure properties revealed with high resolution and large volume cosmological simulations
\'Angeles Molin\'e, Miguel A. S\'anchez-Conde, Alejandra, Aguirre-Santaella, Tomoaki Ishiyama, Francisco Prada, Sof\'ia A. Cora, Darren, Croton, Eric Jullo, R. Benton Metcalf, Taira Oogi, Jos\'e Ruedas

TL;DR
This study uses high-resolution, large-volume cosmological simulations to comprehensively characterize dark matter subhalo properties, distributions, and evolution across cosmic time, providing detailed fits and dependencies for future research.
Contribution
First to quantify subhalo properties over seven decades of mass ratio with dependencies on multiple parameters using combined high-resolution simulations.
Findings
Subhalo mass and velocity functions follow decreasing power-law slopes with no redshift dependence.
Subhalo abundance weakly depends on host halo mass.
Subhalo concentration depends on Vmax, distance to host center, and host mass.
Abstract
We investigate the structural properties, distribution and abundance of LCDM dark matter subhaloes using the Phi-4096 and Uchuu suite of N-body cosmological simulations. Thanks to the combination of their large volume, high mass resolution and superb statistics, we are able to quantify -- for the first time consistently over more than seven decades in ratio of subhalo-to-host-halo mass -- dependencies of subhalo properties with mass, maximum circular velocity, Vmax, host halo mass and distance to host halo centre. We also dissect the evolution of these dependencies over cosmic time. We provide accurate fits for the subhalo mass and velocity functions, both exhibiting decreasing power-law slopes in the expected range of values and with no significant dependence on redshift. We also find subhalo abundance to depend weakly on host halo mass. We explore the distribution of subhaloes within…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research · Cosmology and Gravitation Theories
