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Quantifying the tension between cosmological models and JWST red candidate massive galaxies

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arxiv 2311.02866 v2 pith:HDPC2N4O submitted 2023-11-06 astro-ph.CO astro-ph.GAgr-qchep-phhep-th

Quantifying the tension between cosmological models and JWST red candidate massive galaxies

classification astro-ph.CO astro-ph.GAgr-qchep-phhep-th
keywords cosmologicalcandidateefficiencygalaxieslambdamodelcodedark
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We develop a Python tool to estimate the tail distribution of the number of dark matter halos beyond a mass threshold and in a given volume in a light-cone. The code is based on the extended Press-Schechter model and is computationally efficient, typically taking a few seconds on a personal laptop for a given set of cosmological parameters. The high efficiency of the code allows a quick estimation of the tension between cosmological models and the red candidate massive galaxies released by the James Webb Space Telescope, as well as scanning the theory space with the Markov Chain Monte Carlo method. As an example application, we use the tool to study the cosmological implication of the candidate galaxies presented in Labb\'e et al. (2023). The standard $\Lambda$ cold dark matter ($\Lambda$CDM) model is well consistent with the data if the star formation efficiency can reach $\sim 0.3$ at high redshift. For a low star formation efficiency $\epsilon \sim 0.1$, $\Lambda$CDM model is disfavored at $\sim 2\sigma$-$3\sigma$ confidence level.

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  1. Dark Secrets of Baryons: Illuminating Dark Matter-Baryon Interactions with JWST

    hep-ph 2025-11 conditional novelty 5.0

    JWST ultraviolet luminosity function data currently provide the strongest upper limits on velocity-dependent (∝v^{-2}) dark matter–proton scattering for sub-GeV dark matter.