Implications of Broad [O III] 4364 and UV Line Emission in Two Little Red Dots at z 7 - 8

arXiv:2608.04101 · astro-ph.GA · Submitted 2026-08-04 · Read on arXiv

Casey Papovich, Kaila Ronayne, Weida Hu, Dale D. Kocevski, Pablo Arrabal Haro, Taylor A. Hutchison, Steven L. Finkelstein, Erini Lambrides, Rebecca L. Larson, Bren E. Backhaus, Micaela B. Bagley, Nikko J. Cleri, Mark Dickinson, Ray Garner, Jeyhan Kartaltepe, Vasily Kokorev, Grace M. Olivier, Anthony J. Taylor, Jonathan R. Trump, Jiayang Yang

Texas A&M University · Texas A&M University · Texas A&M University · Colby College · NASA GSFC · NASA GSFC · University of Texas at Austin · University of Maryland · STScI · University of Texas at Austin · University of Texas at Austin · Penn State University · NSF NOIRLab · Texas A&M University · Rochester Institute of Technology · University of Texas at Austin · Observatories of the Carnegie Institution for Science · University of Texas at Austin · University of Connecticut · Texas A&M University

astro-ph.GA

Submitted: 2026-08-04

Comments: Submitted to ApJ; 24 pages, 14 figures. Comments welcome

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

The gist: We present deep, NIRSpec G140M and G395M spectroscopy of Little Red Dots (LRDs) at z = 6.68 and z = 8.35.

Terminology

Abstract

We present deep, NIRSpec G140M and G395M spectroscopy of Little Red Dots (LRDs) at z = 6.68 and z = 8.35. Both LRDs show broad Balmer and [O III] lambda 4364 emission. The broad [O III] lambda 4364 lines have FWHM 1000 km/s, about 1/3 that of the H beta lines. Assuming gas temperatures T 15,000 - 25,000 K, the [O III] lambda 4364/[O III] lambda 5008 ratios of the broad lines yield high gas densities, log n/cm-3 = 6.3 to 7.9, 3-10 times higher than those in broad-line regions of low-redshift quasars. If the broad-lines trace virial motions, it is evidence for metal-enhanced gas clouds, 1-10 pc from the LRD engine. Both LRDs show narrow [C III] lambda 1907 + C III] lambda 1909, and O III] lambda lambda 1661,1666. The C III] ratios yield narrow-line gas densities, log n/cm-3 = 4.2-5.2, similar to those in other star-forming galaxies. The line equivalent widths, EW(O III]), EW(C III]), are at, or exceed, limits expected for stellar populations, likely requiring an additional ionizing source. The LRDs also have [O III] lambda 4364/H gamma ratios that favor ionization from an accretion disk, possibly combined with stars. Both LRDs show nitrogen enhancement based on detections of N III] lambda 1746 or N IV] lambda 1486, which may imply rapid, recent star-formation. These results favor a scenario where the LRD gas envelopes are highly stratified, having high-density clouds with a non-unity covering factors and a complex geometry, such that ionizing radiation from the LRD accretion disk, combined with that from star-forming regions, produce the nebular emission features.

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