English

A big red dot at cosmic noon

Astrophysics of Galaxies 2025-11-05 v2

Abstract

We report the discovery of a little red dot (LRD), dubbed BiRD ('big red dot'), at z=2.33z=2.33 in the field around the z=6.3z=6.3 quasar SDSSJ1030+0524. Using NIRCam images, we identified it as a bright outlier in the F200WF356WF200W-F356W color vs F356WF356W magnitude diagram of point sources in the field. The NIRCam/WFSS spectrum reveals the emission from HeIλ10830\lambda 10830 and PaG line, both showing a narrow and a broad (FWHM2000 kms1FWHM\gtrsim 2000\ \rm kms^{-1}) component. The HeI line is affected by an absorption feature, tracing dense gas with HeI column density in the 23S2^3S level N0.51.2×1014cm2N\sim 0.5-1.2\times 10^{14}\rm cm^{-2}, depending on the location of the absorber, which is outflowing at the speed of Δv830 kms1\Delta v \sim -830\ \rm kms^{-1}. As observed in the majority of LRDs, BiRD does not show X-ray or radio emission. The BH mass and the bolometric luminosity, both inferred from the PaG broad component, amount to MBH108MM_{\rm BH}\sim 10^8\rm M_{\odot} and Lbol2.9×1045ergs1L_{\rm bol}\sim 2.9\times 10^{45}\rm ergs^{-1}, respectively. Intriguingly, BiRD presents strict analogies with other two LRDs spectroscopically confirmed at cosmic noon, GN-28074 ("Rosetta Stone") at z=2.26z=2.26 and RUBIES-BLAGN-1 at z=3.1z=3.1. The blueshifted HeI absorption detected in all three sources suggests that gas outflows may be common in LRDs. We derive a first estimate of the space density of LRDs at z<3z<3 based on JWST data, as a function of LbolL_{\rm bol} and BH mass. The space density is only a factor of 23\sim 2-3 lower than that of UV-selected quasars with comparable LbolL_{\rm bol} and zz, meaning that the contribution of LRDs to the broader AGN population is also relevant at cosmic noon. A similar trend is also observed in terms of BH masses. If, as suggested by recent theories, LRDs probe the very first and rapid growth of black hole seeds, our finding may suggest that the formation of black hole seeds remains efficient at least up to cosmic noon.

Keywords

Cite

@article{arxiv.2506.12141,
  title  = {A big red dot at cosmic noon},
  author = {Federica Loiacono and Roberto Gilli and Marco Mignoli and Giovanni Mazzolari and Roberto Decarli and Marcella Brusa and Francesco Calura and Marco Chiaberge and Andrea Comastri and Quirino D'Amato and Kazushi Iwasawa and Ignas Juodžbalis and Giorgio Lanzuisi and Roberto Maiolino and Stefano Marchesi and Colin Norman and Alessandro Peca and Isabella Prandoni and Matteo Sapori and Matilde Signorini and Paolo Tozzi and Eros Vanzella and Cristian Vignali and Fabio Vito and Gianni Zamorani},
  journal= {arXiv preprint arXiv:2506.12141},
  year   = {2025}
}

Comments

14 pages, 7 figures, accepted for publication in A&A

R2 v1 2026-07-01T03:16:53.127Z