Abstract

Abstract Studies of flux anomalies statistics and perturbations in stellar streams have the potential to constrain models of warm dark matter (WDM), including sterile neutrinos. Producing these constraints requires a parameterization of the WDM mass function relative to that of the cold dark matter (CDM) equivalent. We use five WDM models with half-mode masses, M hm = [1.3,35] × 108 , spread across simulations of the Local Group, lensing ellipticals and the z = 2 universe, to generate such a parameterization: we fit parameters to a functional form for the WDM-to-CDM halo mass function ratio, , of . For M X ≡ virial mass of central halos we obtain α = 2.3, β = 0.8, and γ = −1.0, and this fit is steeper than the extended Press–Schechter formalism predicts. For M X ≡ mass of subhalos we instead obtain α = 4.2, β = 2.5, and γ = −0.2; in both mass definitions the scatter is ∼20%. The second fit typically underestimates the relative abundance of z = 2 WDM subhalos at the tens of percent level. We caution that robust constraints will require bespoke simulations and a careful definition of halo mass, particularly for subhalos of mass <108 .

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