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
arXiv:2412.04557
Abstract
We present a detailed exploration of the most optically-luminous Little Red Dot (erg/s, erg/s, F444W=22AB) found to date. Located in the Abell 2744 field, source A744-45924 was observed by NIRSpec/PRISM with ultradeep spectroscopy reaching SNR100pix, high-resolution 3-4 micron NIRCam/Grism spectroscopy, and NIRCam Medium Band imaging. The NIRCam spectra reveal high rest-frame EW Ã , broad H emission (FWHM4500 km/s), on top of narrow, complex absorption. NIRSpec data show exceptionally strong rest-frame UV to NIR Fe II emission (340Ã ), N IV]1483,1486 and N III]1750, and broad NIR O I 8446 emission. The spectra unambiguously demonstrate a broad-line region associated with an inferred supermassive black hole embedded in dense gas, which might explain a non-detection in ultradeep Chandra X-ray data (> underluminous relative to broad ). Strong UV Nitrogen lines suggest supersolar N/O ratios due to rapid star formation or intense radiation near the AGN. The continuum shows a clear Balmer break at rest-frame 3650Ã , which cannot be accounted for by an AGN power-law alone. A stellar population model produces an excellent fit with a reddened Balmer break and implying a massive (), old 500 Myr, compact stellar core, among the densest stellar systems known (/pc for pc), and AGN emission with extreme intrinsic EW 1000Ã . However, although high and are supported by evidence of an overdensity containing 40 galaxies at , deep high-resolution spectroscopy is required to confirm stellar absorption and rule out that dense gas around the AGN causes the Balmer break instead.
28 pages,10 figures, submitted to ApJ