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The Emerging Black Hole Mass Function in the High-Redshift Universe

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arxiv 2503.14703 v2 pith:QBMOKKSN submitted 2025-03-18 astro-ph.GA

classification astro-ph.GA
keywords observationsjwstblackformationheavymassmodelsseeds
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abstract

Observations with the James Webb Space Telescope (JWST) have identified an abundant population of supermassive black holes (SMBHs) already in place during the first few hundred million years of cosmic history. Most of them appear overmassive relative to the stellar mass in their host systems, challenging models of early black hole seeding and growth. Multiple pathways exist to explain their formation, including heavy seeds formed from direct collapse/supermassive stars or sustained super-Eddington accretion onto light stellar remnant seeds. We use the semi-analytical code A-SLOTH to predict the emerging SMBH mass function under physically motivated models for both light and heavy seed formation, to be compared with upcoming ultra-deep JWST surveys. We find that both pathways can reproduce observations at $z\sim5-6$, but have distinct features at higher redshifts of $z\sim10$. Specifically, JWST observations have the potential to constrain the fraction of efficiently accreting (super-Eddington) SMBHs, as well as the existence and prevalence of heavy seeds, in particular through ultra-deep observations of blank fields and/or gravitational lensing surveys. Such observations will provide key insights to understand the process of SMBH formation and evolution during the emergence of the first galaxies. We further emphasize the great promise of possible SMBH detections at $z\gtrsim 15$ with future JWST observations to break the degeneracy between light- and heavy-seed models.

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Forward citations

Cited by 2 Pith papers

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

  1. Mass distribution of Pop III star clusters: A-SLOTH predictions for JWST observability

    astro-ph.GA 2025-08 conditional novelty 6.0 of 10

    A-SLOTH predicts Pop III Balmer line fluxes 1-3 orders of magnitude below JWST/NIRSpec sensitivity, making unlensed detections unlikely.

  2. The ASTRID Simulation at z=0: From Massive Black Holes to Large-scale Structure

    astro-ph.GA 2025-10 conditional novelty 5.0 of 10

    The ASTRID simulation's present-day universe broadly matches observed black-hole–galaxy scaling relations, galaxy counts, cluster stellar masses, and clustering, with known excesses in low-redshift star formation and ...

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