No evolution in the number density of little red dots from cosmic dawn to cosmic noon
Federica Loiacono, Roberto Gilli, Marco Mignoli, Marcella Brusa, Francesco Calura, Marco Chiaberge, Andrea Comastri, Quirino D'Amato, Roberto Decarli, Ivan Delvecchio, Kazushi Iwasawa, Ignas Juodžbalis, Giorgio Lanzuisi, Roberto Maiolino, Stefano Marchesi, Giovanni Mazzolari, Colin Norman, Alessandro Peca, Isabella Prandoni, Matteo Sapori, Matilde Signorini, Paolo Tozzi, Eros Vanzella, Cristian Vignali, Fabio Vito, Gianni Zamorani, Anita Zanella
astro-ph.GA, astro-ph.CO
Submitted: 2026-06-29
Comments: 19 pages, 10 figures. Submitted to A&A
Code: https://github.com/chriswillott/jwsthttps:
License: http://creativecommons.org/licenses/by/4.0/
The gist: We present our search for little red dots (LRDs) in the "J1030 field", a region of the sky around the z about 6.3 quasar SDSS J1030+0524, observed by the JWST EIGER program.
Terminology
Abstract
We present our search for little red dots (LRDs) in the "J1030 field", a region of the sky around the z about 6.3 quasar SDSS J1030+0524, observed by the JWST EIGER program. Over 154 point-like sources selected in a JWST-based photometric catalog, we find five broad line emitters (with FWHM 1000 km s-1) that are red (F200W - F356W > 0) and are undetected in the X-rays. We use these sources to derive the bolometric luminosity function (LF) of LRDs at z = 2.4 and z = 4.5. At z = 2.4, the space density of LRDs is only a factor of about 2 lower than that of all pre-JWST active galactic nuclei (AGNs) with bolometric luminosity L bol 3 times 10 44 erg s-1. At z = 4.5, our estimate is consistent with those derived for LRDs based on larger areas of the sky. A similar behaviour is observed in the black hole mass function. More importantly, we study the number density of LRDs from cosmic dawn to cosmic noon. We find that there is no significant evolution in the abundance of LRDs with L bol 3 times 10 44 erg s-1 at z > 2. We speculate that the drop at z < 4 seen by other studies is due to their sampling of only the bright-end of the LRDs LF. At cosmic noon, the abundance of LRDs is n = 3.4+5.6-2.4 times 10-5 Mpc-3, which is a factor of about 350 larger than recent model predictions and is comparable with that of X-ray selected AGNs with similar bolometric luminosity. Our result may imply that, if LRDs are the early, rapid stages of supermassive black hole growth, as suggested by some models, then the formation of black hole seeds can be efficient down to epochs as recent as cosmic noon. Alternatively, LRDs may simply be a high-accretion phase in already mature black holes.
Sources
- The Little Blue and Red Dots Rosetta Stones: Non-Gaussian broad lines, hot dust, and X-ray weakness
- Little Red Dots as Globular Clusters in Formation
- A remarkable Ruby: Absorption in dense gas, rather than evolved stars, drives the extreme Balmer break of a Little Red Dot at $z=3.5$
- Euclid Quick Data Release (Q1). Extending the quest for little red dots to z<4
- Little Red and Blue Dots: AGN-excited narrow lines, Lyman- alpha emission, and resemblance to standard quasars
- RUBIES: A Spectroscopic Census of Little Red Dots; All V-Shaped Point Sources Have Broad Lines
- BlackTHUNDER -- A non-stellar Balmer break in a black hole-dominated little red dot at $z=7.04$
- The $M_{\rm BH}-M_{*}$ Relationship at $3<z<7$: Big Black Holes in Little Red Dots
- JADES: comprehensive census of broad-line AGN from Reionization to Cosmic Noon revealed by JWST
- An unambiguous AGN and a Balmer break in an Ultraluminous Little Red Dot at z=4.47 from Ultradeep UNCOVER and All the Little Things Spectroscopy
- Counting Little Red Dots at $z<4$ with Ground-based Surveys and Spectroscopic Follow-up
- Chasing the light: Shadowing, collimation, and the super-Eddington growth of infant black holes in JWST broad-line AGNs
- Little red dots as obscured little blue dots: relative abundances, luminosities, and black-hole masses
- Wings of little dots: Exponential broad lines from a stratified BLR
- The radio properties of the JWST-discovered AGN
- Radio selection of heavily obscured AGN in the J1030 field: unraveling a missing Compton-thick population
- A "Black Hole Star" Reveals the Remarkable Gas-Enshrouded Hearts of the Little Red Dots
- A new sample of Little Red Dots at $z<0.45$ in DESI DR1: Broad Balmer lines, low ionization spectrum and no variability
- Little Red Dots: One Photometric Tag Concealing Diverse Spectroscopic Flavors of Massive Star Formation and Black Hole Activity
- The Way We Tally Becomes the Tale: the Impact of Selection Strategies on the Inferred Evolution of Little Red Dots Across Cosmic Time
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