Emission line formation in scattering dominated media: implications for LRDs
Elisha Modelevsky, Omri Nitzan, Re'em Sari, Eliot Quataert
astro-ph.GA, astro-ph.HE
Submitted: 2026-08-05
Comments: main text: 8 pages, 4 figures. appendices: 8 pages, 2 figures. Submitted to ApJ letters
License: http://creativecommons.org/licenses/by/4.0/
The gist: Recent JWST observations of ``Little Red Dots'' (LRDs) reveal broad and prominent Balmer emission lines.
Terminology
Abstract
Recent JWST observations of ``Little Red Dots'' (LRDs) reveal broad and prominent Balmer emission lines. We present a theoretical framework for intrinsic emission line formation and broadening within static, optically thick, scattering-dominated gas envelopes with thermal populations. Using random-walk and diffusion approximations, we derive analytical line profiles for lines forming intrinsically within the scattering medium. We demonstrate that a geometrically thin planar photosphere produces a shallow line profile characterized by a logarithmic plateau and a v-1 wing. A radially extended photosphere yields a broken power-law spectrum transitioning from v-alpha to v-(alpha+1), with 0 < alpha < 1. This is in contrast to a scattering medium external to the line-forming region, which produces an exponential line profile. We show that this broken power-law model can fit the H alpha line profiles observed in LRDs. Higher quality spectra may be able to distinguish between intrinsic and extrinsic models for the line broadening in LRDs. In our LTE models, the high contrast between the H alpha and continuum flux cannot be explained. Quantitative comparison to LRD spectra requires expanding our models to non-LTE situations.
Sources
- A Critical Evaluation of the Physical Nature of the Little Red Dots
- An (in)complete NIRSpec census of Balmer absorption in Type 1 AGN -- radiation-driven outflows in little red dots, quasars and variable stars
- Little Red and Blue Dots: simply stratified Broad Line Regions
- Quenching of X-ray emission in little red dots by both Compton-thick gas and high accretion rates
- Inside the cocoon: a comprehensive explanation of the spectra of Little Red Dots
- Transonic Solutions for Recombination-Driven Stellar Winds
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