Paschen Jumps in Little Red Dots: Evidence for Nebular Continua
arXiv:2604.09399
Abstract
''Little Red Dots'' (LRDs) are broad-line sources at high redshift, initially identified by their compact morphologies, red colours and prominent Balmer breaks. The origin of their optical-to-near-infrared continua is debated, with proposed explanations ranging from direct recombination emission to thermalised blackbodies from stellar-like atmospheres. Here we report evidence for Paschen jumps in a subset of LRDs, consistent with free-bound recombination to hydrogen . The Paschen and Brackett continuum shapes across the sample are consistent with minimally reddened emission from low-temperature gas with K, while the presence of Paschen jump signatures limits scenarios in which the emission is thermalised. Further, the extreme H equivalent widths and the tight observed correlation between H and the continuum follow naturally if both originate in recombination emission. This provides an observational upper limit on the contribution of any direct AGN accretion component and any stellar-atmosphere-like component, as well as on the fraction of line emission that can be thermalised as it traverses the cocoon. Ultimately, nebular radiative-transfer models provide a self-consistent explanation of the continuum, line strengths and line profiles without requiring multiple separately fitted components.
7 pages, 6 figures, submitted to A&A. Comments are welcome