Theoretical dark matter halo substructure
Eduard Salvador-Sol\'e, Sinue Serra, Alberto Manrique

TL;DR
This paper develops a theoretical model for dark matter halo substructure using the peak formalism, predicting subhalo properties consistent with simulations and exploring the possibility of nested subhaloes at all scales.
Contribution
It introduces a novel theoretical framework for modeling halo substructure based on peak formalism and inside-out evolution, aligning well with simulation data.
Findings
Predicted subhalo mass abundance matches high-resolution simulation results.
Derived subhalo density profiles before and after tidal truncation.
Suggested the universe may contain nested subhaloes at all scales.
Abstract
In two previous papers (Salvador-Sol\'e 2012a,b), it was shown that: i) the typical structural and kinematic properties of haloes in (bottom-up) hierarchical cosmologies endowed with random Gaussian density perturbations of dissipationless collisionless dark matter emerge naturally from the typical properties of peaks in the primordial density field and ii) halo statistics are well described by the peak formalism. In the present paper, we use these results to model halo substructure. Specifically, making use of the peak formalism and the fact that accreting haloes evolve from the inside-out, we derive the subhalo mass abundance and number density profile per infinitesimal mass for subhaloes of different masses, as a function of the subhalo maximum circular velocity or mass, before and after the tidal truncation of subhaloes by the host potential well. The subhalo properties obtained by…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Cosmology and Gravitation Theories · Dark Matter and Cosmic Phenomena
