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NeutralUniverseMachine: How Filaments and Dark Matter Halo Influence the Galaxy Cold Gas Content

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arxiv 2409.08539 v2 pith:HC4RF4AZ submitted 2024-09-13 astro-ph.GA astro-ph.CO

classification astro-ph.GAastro-ph.CO
keywords filamentshaloesmodelgalaxiesgalaxyhaloillustristnginfluence
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Aims. We aim to investigate the influence of the distance to filaments and dark-matter haloes on galaxy cold-gas content in the empirical model NeutralUniverseMachine (NUM) and the hydrodynamical simulation IllustrisTNG. Methods. We used DisPerSE to identify cosmic web structures and calculate the distance of galaxies to filaments for both observations and models. We show the results of the HI and H2 mass functions, HI- and H2-halo-mass relations, HI- and H2-stellar-mass relations for galaxies in the NUM model and IllustrisTNG with different distances to filaments and compare them with observational measurements. We also show the evolution of HI and H2 mass densities at different distances to filament bins. Results. We find that how filaments affect the HI gas is generally less significant compared to the halo environment. There is a weak trend in the observations at z=0 that low-mass haloes lying closer to the filaments tend to have reduced HI masses. However, this trend reverses for massive haloes with log(Mvir/Msun) > 12.5. This behaviour is accurately reproduced in the NUM model due to the dependence of HI gas on the halo formation time, but it does not appear in IllustrisTNG. The influence of filaments on the HI gas becomes slightly weaker at higher redshifts and is only significant for galaxies that reside in massive haloes in the NUM model. Filaments have almost no impact on the H2-stellar-mass relation in both models, confirming that H2 is primarily determined by the galaxy stellar mass and star formation rate.

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  1. The HI Mass Function of the Local Universe: Combining Measurements from HIPASS, ALFALFA and FASHI

    astro-ph.GA 2024-11 conditional novelty 6.0 of 10

    Combining HIPASS, ALFALFA, and FASHI over 76% of the sky yields the most complete local HI mass function, with alpha=-1.30, log(M*/h70^-2 Msun)=9.86, and Omega_HI=4.54e-4 h70^-1.

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