Improved Halo Model Calibrations for Mixed Dark Matter Models of Ultralight Axions
Tibor Dome, Simon May, Alex Lagu\"e, David J. E. Marsh, Sarah, Johnston, Sownak Bose, Alex Tocher, Anastasia Fialkov

TL;DR
This paper develops and calibrates an improved halo model for mixed dark matter cosmologies with ultralight axions, enabling fast and accurate predictions of structure formation for various axion fractions.
Contribution
The authors introduce a new version of AxionHMcode calibrated for mixed dark matter models with axion fractions up to 0.3, improving accuracy and computational efficiency.
Findings
The calibrated model achieves deviations below 10% for f ≤ 0.1 at relevant scales.
The model maintains accuracy within 20% for f ≤ 0.3 at redshift z≈1.
The new code evaluates in under 1 minute, suitable for Bayesian analyses.
Abstract
We study the implications of relaxing the requirement for ultralight axions to account for all dark matter in the Universe by examining mixed dark matter (MDM) cosmologies with axion fractions within the fuzzy dark matter (FDM) window eV eV. Our simulations, using a new MDM gravity solver implemented in AxiREPO, capture wave dynamics across various scales with high accuracy down to redshifts . We identify halos with Rockstar using the CDM component and find good agreement of inferred halo mass functions (HMFs) and concentration-mass relations with theoretical models across redshifts . This justifies our halo finder approach a posteriori as well as the assumptions underlying the MDM halo model AxionHMcode. Using the inferred axion halo mass-cold halo mass relation and calibrating a…
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Taxonomy
TopicsDark Matter and Cosmic Phenomena · Cosmology and Gravitation Theories · Geophysics and Gravity Measurements
