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Differentiable Halo Mass Prediction and the Cosmology-Dependence of Halo Mass Functions

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arxiv 2507.03074 v1 pith:KWEM22RW submitted 2025-07-03 astro-ph.CO astro-ph.GA

Differentiable Halo Mass Prediction and the Cosmology-Dependence of Halo Mass Functions

classification astro-ph.CO astro-ph.GA
keywords differentiablemasscosmologicaldependencehalomodelmodelsapproach
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Modern cosmological inference increasingly relies on differentiable models to enable efficient, gradient-based parameter estimation and uncertainty quantification. Here, we present a novel approach for predicting the abundance of dark matter haloes and their cosmology dependence using a differentiable, field-level neural network (NN) model, and study how well the cosmology dependence is captured by common parametrisations of the halo mass function (HMF), and by our NN-based approach. By training a 3D U-Net on initial density fields from fast N-body simulations with varying cosmological parameters, we enable direct, differentiable mapping from the linear density field to protohalo patches and their mass bins. Our method achieves competitive accuracy in identifying protohalo regions and in capturing the dependence of the HMF on cosmological parameters. Our NN derivatives agree well with finite differences of both analytical and emulated HMFs, at the level of the disagreement among the different models. We further demonstrate how the NN model can additionally be used to investigate the response of the HMF to changes in the initial Gaussian random field. Finally, we also demonstrate that a differentiable model can be used to extrapolate existing models at very high precision.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Decaying Dark Matter Halo Abundance from a Revised Spherical Collapse Model

    astro-ph.CO 2026-07 conditional novelty 6.0

    A mass-dependent collapse threshold from a revised spherical collapse model predicts the decaying-dark-matter halo mass function, matching N-body simulations at z≈1 and for mild kicks at z=0.

  2. Evolution mapping III: A new recipe for the halo mass function

    astro-ph.CO 2025-11 conditional novelty 6.0

    A new 9-parameter fitting function for the halo mass function, using the integrated growth history (x-tilde) and effective spectral index (n_eff), reaches 1–5% accuracy across a wide range of cosmologies and overdensi...