The Deepest GLIMPSE of a Dense Gas Cocoon Enshrouding a Little Red Dot

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Hauptverfasser: Kokorev, Vasily, Chisholm, John, Naidu, Rohan P., Fujimoto, Seiji, Atek, Hakim, Brammer, Gabriel, Finkelstein, Steven L., Akins, Hollis B., Berg, Danielle A., Furtak, Lukas J., Fei, Qinyue, Hsiao, Tiger Yu-Yang, Labbé, Ivo, Matthee, Jorryt, Muñoz, Julian B., Oesch, Pascal A., Pan, Richard, Rinaldi, Pierluigi, Saldana-Lopez, Alberto, Schaerer, Daniel, Volonteri, Marta, Zitrin, Adi
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Veröffentlicht: 2025
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author Kokorev, Vasily
Chisholm, John
Naidu, Rohan P.
Fujimoto, Seiji
Atek, Hakim
Brammer, Gabriel
Finkelstein, Steven L.
Akins, Hollis B.
Berg, Danielle A.
Furtak, Lukas J.
Fei, Qinyue
Hsiao, Tiger Yu-Yang
Labbé, Ivo
Matthee, Jorryt
Muñoz, Julian B.
Oesch, Pascal A.
Pan, Richard
Rinaldi, Pierluigi
Saldana-Lopez, Alberto
Schaerer, Daniel
Volonteri, Marta
Zitrin, Adi
author_facet Kokorev, Vasily
Chisholm, John
Naidu, Rohan P.
Fujimoto, Seiji
Atek, Hakim
Brammer, Gabriel
Finkelstein, Steven L.
Akins, Hollis B.
Berg, Danielle A.
Furtak, Lukas J.
Fei, Qinyue
Hsiao, Tiger Yu-Yang
Labbé, Ivo
Matthee, Jorryt
Muñoz, Julian B.
Oesch, Pascal A.
Pan, Richard
Rinaldi, Pierluigi
Saldana-Lopez, Alberto
Schaerer, Daniel
Volonteri, Marta
Zitrin, Adi
contents The detection of strong Balmer breaks and absorption features in Little Red Dots (LRDs) suggests they host AGN embedded within dense gas envelopes, potentially powered by super-Eddington accretion. We present GLIMPSE-17775, a luminous ($L_{\rm bol}\sim10^{45}$ erg s$^{-1}$) LRD at $z=3.501$ behind Abell S1063 ($μ\sim2$), observed with deep JWST/NIRCam and a $\sim$20 hr (80 hr de-lensed) NIRSpec/G395M spectrum. The data reveal 40+ emission and absorption features, including a rich forest of low-ionization FeII lines and numerous broad hydrogen recombination transitions. We use this depth to test the dense-gas interpretation through five independent diagnostics. Nearly all permitted lines show exponential wings with consistent FWHM, the signature of Thomson scattering requiring $n_e\gtrsim10^8$ cm$^{-3}$. Adopting this width yields $M_{\rm BH}\sim10^{6.7}M_\odot$, a factor of ten lower than Gaussian fits, and $λ_{\rm Edd}\sim1.8$. Additional diagnostics support the same picture: a pronounced Balmer break ($f_{ν,4050}/f_{ν,3670}=2.0\pm0.1$), enhanced HeI $\lambda7065$ and $\lambda10830$ with P-Cygni absorption, Bowen-fluorescent OI $\lambda8446$-$\lambda11290$ emission requiring Ly$β$ pumping, and 16 FeII lines matching fluorescence models. These features indicate a dense ($n\sim10^8$ cm$^{-3}$), partially ionized cocoon where scattering and fluorescence dominate line formation, providing strong evidence that at least some LRDs are powered by super-Eddington black-hole growth in the early Universe.
format Preprint
id arxiv_https___arxiv_org_abs_2511_07515
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The Deepest GLIMPSE of a Dense Gas Cocoon Enshrouding a Little Red Dot
Kokorev, Vasily
Chisholm, John
Naidu, Rohan P.
Fujimoto, Seiji
Atek, Hakim
Brammer, Gabriel
Finkelstein, Steven L.
Akins, Hollis B.
Berg, Danielle A.
Furtak, Lukas J.
Fei, Qinyue
Hsiao, Tiger Yu-Yang
Labbé, Ivo
Matthee, Jorryt
Muñoz, Julian B.
Oesch, Pascal A.
Pan, Richard
Rinaldi, Pierluigi
Saldana-Lopez, Alberto
Schaerer, Daniel
Volonteri, Marta
Zitrin, Adi
Astrophysics of Galaxies
The detection of strong Balmer breaks and absorption features in Little Red Dots (LRDs) suggests they host AGN embedded within dense gas envelopes, potentially powered by super-Eddington accretion. We present GLIMPSE-17775, a luminous ($L_{\rm bol}\sim10^{45}$ erg s$^{-1}$) LRD at $z=3.501$ behind Abell S1063 ($μ\sim2$), observed with deep JWST/NIRCam and a $\sim$20 hr (80 hr de-lensed) NIRSpec/G395M spectrum. The data reveal 40+ emission and absorption features, including a rich forest of low-ionization FeII lines and numerous broad hydrogen recombination transitions. We use this depth to test the dense-gas interpretation through five independent diagnostics. Nearly all permitted lines show exponential wings with consistent FWHM, the signature of Thomson scattering requiring $n_e\gtrsim10^8$ cm$^{-3}$. Adopting this width yields $M_{\rm BH}\sim10^{6.7}M_\odot$, a factor of ten lower than Gaussian fits, and $λ_{\rm Edd}\sim1.8$. Additional diagnostics support the same picture: a pronounced Balmer break ($f_{ν,4050}/f_{ν,3670}=2.0\pm0.1$), enhanced HeI $\lambda7065$ and $\lambda10830$ with P-Cygni absorption, Bowen-fluorescent OI $\lambda8446$-$\lambda11290$ emission requiring Ly$β$ pumping, and 16 FeII lines matching fluorescence models. These features indicate a dense ($n\sim10^8$ cm$^{-3}$), partially ionized cocoon where scattering and fluorescence dominate line formation, providing strong evidence that at least some LRDs are powered by super-Eddington black-hole growth in the early Universe.
title The Deepest GLIMPSE of a Dense Gas Cocoon Enshrouding a Little Red Dot
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2511.07515