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Warm dark matter constraints from the JWST

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arxiv 2303.14239 v2 pith:7WQAG26Z submitted 2023-03-24 astro-ph.CO astro-ph.GA

classification astro-ph.COastro-ph.GA
keywords massmodelsstellardarkdensitygivenjwstmatter
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Warm Dark Matter (WDM) particles with masses ($\sim$ kilo electronvolt) offer an attractive solution to the small-scale issues faced by the Cold Dark Matter (CDM) paradigm. The delay of structure formation in WDM models and the associated dearth of low-mass systems at high-redshifts makes this an ideal time to revisit WDM constraints in light of the unprecedented data-sets from the James Webb Space Telescope (JWST). Developing a phenomenological model based on the halo mass functions in CDM and WDM models, we calculate high-redshift ($z \gt 6$) the stellar mass functions (SMF) and the associated stellar mass density (SMD) and the maximum stellar mass allowed in a given volume. We find that: (i) WDM as light as 1.5 keV is already disfavoured by the low-mass end of the SMF (stellar mass $M_* \sim 10^7 \rm{M_\odot}$) although caution must be exerted given the impact of lensing uncertainties; (ii) 1.5 keV WDM models predict SMD values that show a steep decrease from $10^{8.8}$ to $10^{2} ~{\rm M_\odot ~cMpc^{-3}}$ from $z \sim 4$ to 17 for $M_* \gt 10^8 \rm{M_\odot}$; (iii) the 1.5 keV WDM model predicts a sharp and earlier cut-off in the maximum stellar masses for a given number density (or volume) as compared to CDM or heavier WDM models. For example, with a number density of $10^{-3} \rm {cMpc^{-3}}$, 1.5 (3) KeV WDM models do not predict bound objects at $z \gt 12$ (18). Forthcoming JWST observations of multiple blank fields can therefore be used as a strong probe of WDM at an epoch inaccessible by other means.

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Cited by 2 Pith papers

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

  1. Explaining JWST star formation history at $z \sim 17$ by modifying $\Lambda$CDM

    astro-ph.CO 2025-01 reject novelty 6.0 of 10

    Constraining nDGP, k-mouflage, and phenomenological modified gravity with JWST high-redshift data yields preferred parameters, but no model fully reproduces the observed z~12 star formation rate density.

  2. Probing inflationary features with galaxy ultraviolet luminosity function observables

    astro-ph.CO 2026-02 conditional novelty 5.0 of 10

    Galaxy UV luminosity function data at z=6–9 give upper limits on bump-like inflationary features at k≈0.3–20 Mpc^-1, similar to but not stronger than optical-depth constraints.

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