A Population of Little Red Dot-like Quasars in SDSS
astro-ph.GA
Submitted: 2026-06-24
Updated: 2026-09-09
Comments: 22 pages, 7 figures (+2 appendix figures), 4 tables. Accepted for publication in The Astrophysical Journal
License: http://creativecommons.org/licenses/by/4.0/
The gist: Compact and red sources in the high redshift (z about5) Universe, known as "Little Red Dots" (LRDs), are among JWST's most intriguing discoveries.
Terminology
Abstract
Compact and red sources in the high redshift (z about5) Universe, known as "Little Red Dots" (LRDs), are among JWST's most intriguing discoveries. These sources have broad Balmer emission lines, weak X-ray emission, and unique spectral energy distributions (SEDs) poorly fit by either stellar or AGN templates. Local LRD-like objects allow for detailed studies of the underlying physical processes with archival multi-wavelength datasets unavailable in the high- z Universe. We show that the SDSS ugriz filters at z about0.4, 0.8 overlap well with the JWST filters used to select LRDs at z about5. We use SDSS quasars to define a sample of about1300 Local Red Dots (LoRDs) which share the same photometric colors of LRDs. A subset of the LoRD sample selected to have V-shaped continua (N=244) show prominent higher-order Balmer absorption features and [NeV] λ 3426 emission, both of which would likely be missed in JWST/PRISM observations given the low spectral resolution. A composite SED of the LoRDs differs from a typical quasar SED in the rest-frame UV/optical, but the two agree with each other in the NIR. The LoRD SED matches well with a stack of LRDs and can be modeled either as a reddened AGN combined with a host galaxy, or as a reddened AGN combined with a host galaxy and a cool blackbody. Interestingly, the LoRDs are X-ray detected at a rate comparable to typical quasars. However, the probability that LoRDs and typical quasars would go undetected, if subject to the LRD X-ray upper limits, is >50%.
Sources
- Double Dots: Compact Pairs Mark Little Red Dots and High-Redshift Broad-line AGNs
- Do little red dots really form a distinct class of astronomical objects?
- RUBIES: The Evolution of the Ionization Parameter from 0 < z < 9
- A PANORAMIC of UV-optical morphologies of "Little Red Dots": Two groups of LRDs distinguished by UV half-light radius
- OCEANS of Absorption: High-resolution NIRSpec Spectroscopy Reveals Diverse Balmer-line Absorption in Little Red Dots
- Little Red Dots host Black Hole Stars: A unified family of gas-reddened AGN revealed by JWST/NIRSpec spectroscopy
- The 2017 Release of Cloudy
- A Critical Evaluation of the Physical Nature of the Little Red Dots
- Holes in the BH$^\star$? AGN signatures in the FUV spectrum of a black-hole dominated Little Red Dot at $z=7.04$
- 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
- Discovery of Multiply Ionized Iron Emission Powered by an Active Galactic Nucleus in a z~7 Little Red Dot
- (LRDs)$^2$: The Low-ReDshift Little Red Dots Survey. II. DESI DR1 Sample
- The SDSS Imaging Pipelines
- No Luminous Little Red Dots: A Sharp Cutoff in Their Luminosity Function
- Little Red Dots as Obscured Little Blue Dots: A Super-Eddington Unification Model
- The Engine and its Flows: Little Red Dot spectra are shaped by the column densities of their gas envelopes
- A "Black Hole Star" Reveals the Remarkable Gas-Enshrouded Hearts of the Little Red Dots
- Little Red Dots: One Photometric Tag Concealing Diverse Spectroscopic Flavors of Massive Star Formation and Black Hole Activity
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