The Missing Hard Photons of Little Red Dots: Their Incident Ionizing Spectra Resemble Massive Stars

Fuente: arXiv
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Autores principales: Wang, Bingjie, Leja, Joel, Katz, Harley, Inayoshi, Kohei, Cleri, Nikko J., de Graaff, Anna, Hviding, Raphael E., van Dokkum, Pieter, Greene, Jenny E., Labbé, Ivo, Matthee, Jorryt, McConachie, Ian, Naidu, Rohan P., Nelson, Erica J.
Formato: Preprint
Publicado: 2025
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author Wang, Bingjie
Leja, Joel
Katz, Harley
Inayoshi, Kohei
Cleri, Nikko J.
de Graaff, Anna
Hviding, Raphael E.
van Dokkum, Pieter
Greene, Jenny E.
Labbé, Ivo
Matthee, Jorryt
McConachie, Ian
Naidu, Rohan P.
Nelson, Erica J.
author_facet Wang, Bingjie
Leja, Joel
Katz, Harley
Inayoshi, Kohei
Cleri, Nikko J.
de Graaff, Anna
Hviding, Raphael E.
van Dokkum, Pieter
Greene, Jenny E.
Labbé, Ivo
Matthee, Jorryt
McConachie, Ian
Naidu, Rohan P.
Nelson, Erica J.
contents The nature of Little Red Dots (LRDs) has largely been investigated through their continuum emission, with lines assumed to arise from a broad-line region. In this paper, we instead use recombination lines to infer the intrinsic properties of the central engine. Our analysis first reveals a tension between the ionizing properties implied from H$α$ and HeII$\,λ$4686. The high H$α$ EWs require copious H-ionizing photons, more than the bluest AGN ionizing spectra can provide. In contrast, HeII emission is marginally detected, and its low EW is, at most, consistent with the softest AGN spectra. The low HeII/H$β$ ($\sim10^{-2}$, $<20\times$ local AGN median) further points to an unusually soft ionizing spectrum. We extend our analysis to dense gas envelopes (``quasi-star''/``black-hole star''), and find that hydrogen recombination lines become optically thick and lose diagnostic power, but HeII remains optically thin and a robust tracer. Photoionization modeling with Cloudy rules out standard AGN accretion disk spectra. Alternative explanations include: exotic AGN with red rest-optical emission; high average optical depth ($>10$) from gas/dust; and/or soft ionizing spectra with abundant H-ionizing photons, consistent with e.g., a cold accretion disk or a composite of AGN and stars. The latter is an intriguing scenario since high hydrogen densities are highly conducive for star formation, and nuclear star clusters are found in the vicinity of local massive black holes. While previous studies have mostly focused on features dominated by the absorbing hydrogen cloud, the HeII-based diagnostic proposed here represents a crucial step toward understanding the central engine of LRDs.
format Preprint
id arxiv_https___arxiv_org_abs_2508_18358
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The Missing Hard Photons of Little Red Dots: Their Incident Ionizing Spectra Resemble Massive Stars
Wang, Bingjie
Leja, Joel
Katz, Harley
Inayoshi, Kohei
Cleri, Nikko J.
de Graaff, Anna
Hviding, Raphael E.
van Dokkum, Pieter
Greene, Jenny E.
Labbé, Ivo
Matthee, Jorryt
McConachie, Ian
Naidu, Rohan P.
Nelson, Erica J.
Astrophysics of Galaxies
The nature of Little Red Dots (LRDs) has largely been investigated through their continuum emission, with lines assumed to arise from a broad-line region. In this paper, we instead use recombination lines to infer the intrinsic properties of the central engine. Our analysis first reveals a tension between the ionizing properties implied from H$α$ and HeII$\,λ$4686. The high H$α$ EWs require copious H-ionizing photons, more than the bluest AGN ionizing spectra can provide. In contrast, HeII emission is marginally detected, and its low EW is, at most, consistent with the softest AGN spectra. The low HeII/H$β$ ($\sim10^{-2}$, $<20\times$ local AGN median) further points to an unusually soft ionizing spectrum. We extend our analysis to dense gas envelopes (``quasi-star''/``black-hole star''), and find that hydrogen recombination lines become optically thick and lose diagnostic power, but HeII remains optically thin and a robust tracer. Photoionization modeling with Cloudy rules out standard AGN accretion disk spectra. Alternative explanations include: exotic AGN with red rest-optical emission; high average optical depth ($>10$) from gas/dust; and/or soft ionizing spectra with abundant H-ionizing photons, consistent with e.g., a cold accretion disk or a composite of AGN and stars. The latter is an intriguing scenario since high hydrogen densities are highly conducive for star formation, and nuclear star clusters are found in the vicinity of local massive black holes. While previous studies have mostly focused on features dominated by the absorbing hydrogen cloud, the HeII-based diagnostic proposed here represents a crucial step toward understanding the central engine of LRDs.
title The Missing Hard Photons of Little Red Dots: Their Incident Ionizing Spectra Resemble Massive Stars
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2508.18358