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A deep learning model for the density profiles of subhaloes in IllustrisTNG

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arxiv 2403.12125 v2 pith:RFQSM2X5 submitted 2024-03-18 astro-ph.GA astro-ph.CO

A deep learning model for the density profiles of subhaloes in IllustrisTNG

classification astro-ph.GA astro-ph.CO
keywords profileprofilesdensitymodelsubhaloesdegreesdiscoversformation
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present a machine-learning-based model for the total density profiles of subhaloes with masses $M \gtrsim 7\times 10^8\,h^{-1}{\rm M}_\odot$ in the IllustrisTNG100 simulation. The model is based on an interpretable variational encoder (IVE) which returns the independent factors of variation in the density profiles within a low-dimensional representation, as well as the predictions for the density profiles themselves. The IVE returns accurate and unbiased predictions on all radial ranges, including the outer region profile where the subhaloes experience tidal stripping; here its fit accuracy exceeds that of the commonly used Einasto profile. The IVE discovers three independent degrees of freedom in the profiles, which can be interpreted in terms of the formation history of the subhaloes. In addition to the two parameters controlling the normalization and inner shape of the profile, the IVE discovers a third parameter that accounts for the impact of tidal stripping onto the subhalo outer profile; this parameter is sensitive to the mass loss experienced by the subhalo after its infall onto its parent halo. Baryonic physics in the IllustrisTNG galaxy formation model does not impact the number of degrees of freedom identified in the profile compared to the pure dark matter expectations, nor their physical interpretation. Our newly proposed profile fit can be used in strong lensing analyses or other observational studies which aim to constrain cosmology from small-scale structures.

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Cited by 2 Pith papers

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