The warm outer layer of a Little Red Dot as the source of [Fe II] and collisional Balmer lines with scattering wings
arXiv:2510.00103 · doi:10.1051/0004-6361/202557537
Abstract
The population of the Little Red Dots (LRDs) may represent a key phase of supermassive black hole (SMBH) growth. A cocoon of dense excited gas is emerging as key component to explain the most striking properties of LRDs, such as strong Balmer breaks and Balmer absorption, as well as the weak IR emission. To dissect the structure of LRDs, we analyze new deep JWST/NIRSpec PRISM and G395H spectra of FRESCO-GN-9771, one of the most luminous known LRDs at . These reveal a strong Balmer break, broad Balmer lines and very narrow [O III] emission. We unveil a forest of optical [Fe II] lines, which we argue is emerging from a dense ( cm) warm layer with electron temperature K. The broad wings of H and H have an exponential profile due to electron scattering in this same layer. The high flux ratio of is an indicator of collisional excitation and resonant scattering dominating the Balmer line emission. A narrow H component, unseen in the other two Balmer lines due to outshining by the broad components, could trace the ISM of a normal host galaxy with a star formation rate M yr. The warm layer is mostly opaque to Balmer transitions, producing a characteristic P-Cygni profile in the line centers suggesting outflowing motions. This same layer is responsible for shaping the Balmer break. The broad-band spectrum can be reasonably matched by a simple photoionized slab model that dominates the Å continuum and a low mass ( M) galaxy that could explain the narrow [O III], with only subdominant contribution to the UV continuum. Our findings indicate that Balmer lines are not directly tracing gas kinematics near the SMBH and that the BH mass scale is likely much lower than virial indicators suggest.
18 pages incl. references. Main figure: 4 ([Fe II] model). Accepted vesion A&A
References in corpus (36)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- PyNeb: a new tool for analyzing emission lines. I. Code description and validation of results
- JADES. The diverse population of infant Black Holes at 4<z<11: merging, tiny, poor, but mighty
- GA-NIFS: A massive black hole in a low-metallicity AGN at revealed by JWST/NIRSpec IFS
- EIGER II. first spectroscopic characterisation of the young stars and ionised gas associated with strong H and [OIII] line-emission in galaxies at z=5-7 with JWST
- SN 1994W: An Interacting Supernova or Two Interacting Shells?
- RUBIES: Evolved Stellar Populations with Extended Formation Histories at in Candidate Massive Galaxies Identified with JWST/NIRSpec
- RUBIES: a complete census of the bright and red distant Universe with JWST/NIRSpec
- JWST Noise Floor I: Random Error Sources in JWST NIRCam Time Series
- RUBIES: JWST/NIRSpec Confirmation of an Infrared-luminous, Broad-line Little Red Dot with an Ionized Outflow
- JADES -- The Rosetta Stone of JWST-discovered AGN: deciphering the intriguing nature of early AGN
- A remarkable Ruby: Absorption in dense gas, rather than evolved stars, drives the extreme Balmer break of a Little Red Dot at
- UNCOVER: 404 Error -- Models Not Found for the Triply Imaged Little Red Dot A2744-QSO1
- Improved Fe II emission line models for AGN using new atomic datasets
- Investigating photometric and spectroscopic variability in the multiply-imaged Little Red Dot A2744-QSO1
- Deep silence: radio properties of little red dots
- The rise and fall of the iron-strong nuclear transient PS16dtm
- No [CII] or dust detection in two Little Red Dots at z > 7
- Near-infrared [Fe II] and H Emission-line Study of Galactic Supernova Remnants in the First Quadrant
- Little Red Dots As Late-stage Quasi-stars
- "Little red dots" cannot reside in the same dark matter halos as comparably luminous unobscured quasars
- Fe II emission in active galactic nuclei
- CLASS: Coronal Line Activity Spectroscopic Survey
- Another piece to the puzzle: radio detection of a JWST detected AGN candidate
- Atomic Data Assessment with PyNeb: Radiative and Electron Impact Excitation Rates for [Fe II] and [Fe III]
- The radio properties of the JWST-discovered AGN
- Lonely Little Red Dots: Challenges to the AGN-nature of little red dots through their clustering and spectral energy distributions
- UNCOVERing the High-redshift AGN Population among Extreme UV Line Emitters
- Impact of Resonance, Raman, and Thomson Scattering on Hydrogen Line Formation in Little Red Dots
- Feedback and dynamical masses in high- galaxies: the advent of high-resolution NIRSpec spectroscopy
- A big red dot at cosmic noon
- Radiative transfer of hydrogen lines from supernova remnant shock waves: contributions of 2s-state hydrogen atoms
- A weak Ly halo for an extremely bright Little Red Dot: Indications of enshrouded SMBH growth
- The 2175 Å~ Bump Features in FeLoBAL Quasars: One Indicator of MW-like Dust in the Nuclear Region of Quasar
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