Between Little Red Dots and Star-Forming Galaxies: A Sequence in the Optical Continuum Slope

arXiv:2609.07025 · astro-ph.GA · Submitted 2026-09-07 · Read on arXiv

astro-ph.GA

Submitted: 2026-09-07

Updated: 2026-09-07

Comments: 20 pages, 17 figures

License: http://creativecommons.org/licenses/by/4.0/

The gist: The "Little Red Dots" (LRDs) uncovered by JWST are typically analyzed as a distinct class of objects; however, whether they are separated from ordinary star-forming galaxies by a genuine boundary has

Terminology

Abstract

The "Little Red Dots" (LRDs) uncovered by JWST are typically analyzed as a distinct class of objects; however, whether they are separated from ordinary star-forming galaxies by a genuine boundary has not been tested at the population level. Using a sample of about3,500 galaxies at 3 z 8 with NIRSpec/PRISM spectra from the DAWN JWST Archive, we modeled their rest-frame UV-to-optical continuum emission with power laws and located the sources in the β - β plane. Alongside a dense locus of star-forming galaxies and a diagonal sequence which can be explained by dust reddening and/or quiescence, we identify a vertical sequence extending from the locus of star-forming galaxies into the LRD region. This sequence is smoothly and continuously populated, with no clear boundary between the two populations. Its middle section, -1 β 0, hosts an intermediate population of about50 sources that falls outside the LRD selection boundary and has been largely overlooked; NIRCam imaging shows their rest-frame UV and optical median stacked images lie between point-like LRDs and extended star-forming galaxies. We modeled the vertical sequence as linear mixtures of stacked star-forming spectra and a black hole star (BH*) template derived from "The Cliff", one of the most compelling BH* candidates, and we infer black hole-to-stellar mass ratios η= M/M* about 0.006-0.1 at the LRD end. We propose-1 β 0 as a practical selection window for possible transition candidates and argue that LRDs may be the compact, BH*-dominated extreme of a continuous population in which the relative contributions of the host and BH* vary smoothly.

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