English

A Selection Aware View of Black Hole-Galaxy Coevolution at High Redshift

Astrophysics of Galaxies 2026-03-05 v1

Abstract

The large population of broad-line Active Galactic Nuclei (AGN) observed with the James Webb Space Telescope (JWST) at z4z \gtrsim 4 opens a new window onto the black hole-galaxy connection in the first Gyr of cosmic history. We use the JADES survey-level dataset and develop a forward-modeling Bayesian framework that explicitly accounts for broad Hα\alpha detectability, ensuring that selection effects are incorporated into the likelihood function. With this approach, we constrain the black hole-stellar mass (MBHM_{\mathrm{BH}}-MM_\star) relation to be logMBH=4.060.51+0.50+1.170.06+0.06logM\log M_{\rm BH} = -4.06^{+0.50}_{-0.51} + 1.17^{+0.06}_{-0.06}\,\log M_\star, with an intrinsic orthogonal scatter of σint=0.630.11+0.14\sigma_{\rm int} = 0.63^{+0.14}_{-0.11} dex. The slope and normalization are consistent with local determinations, indicating that the average scaling was already established by z4z \sim 4-6. This suggests that the primary evolution of the relation occurs in its dispersion rather than in its mean normalization. In contrast, the substantially larger intrinsic scatter relative to the nearby Universe reveals a wider diversity of black hole-galaxy growth histories, likely driven by bursty accretion, delayed feedback, and differences in merger or seeding histories. Future JWST samples will be crucial to test whether this increased scatter is a persistent feature of the high-redshift Universe.

Keywords

Cite

@article{arxiv.2603.04358,
  title  = {A Selection Aware View of Black Hole-Galaxy Coevolution at High Redshift},
  author = {Francesco Ziparo and Stefano Carniani and Simona Gallerani and Bartolomeo Trefoloni},
  journal= {arXiv preprint arXiv:2603.04358},
  year   = {2026}
}

Comments

Submitted to A&A. Comments are welcome

R2 v1 2026-07-01T11:03:33.322Z