JADES. The diverse population of infant Black Holes at 4<z<11: merging, tiny, poor, but mighty

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Main Authors: Maiolino, Roberto, Scholtz, Jan, Curtis-Lake, Emma, Carniani, Stefano, Baker, William, de Graaff, Anna, Tacchella, Sandro, Übler, Hannah, D'Eugenio, Francesco, Witstok, Joris, Curti, Mirko, Arribas, Santiago, Bunker, Andrew J., Charlot, Stéphane, Chevallard, Jacopo, Eisenstein, Daniel J., Egami, Eiichi, Ji, Zhiyuan, Jones, Gareth C., Lyu, Jianwei, Rawle, Tim, Robertson, Brant, Rujopakarn, Wiphu, Perna, Michele, Sun, Fengwu, Venturi, Giacomo, Williams, Christina C., Willott, Chris
Format: Preprint
Published: 2023
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author Maiolino, Roberto
Scholtz, Jan
Curtis-Lake, Emma
Carniani, Stefano
Baker, William
de Graaff, Anna
Tacchella, Sandro
Übler, Hannah
D'Eugenio, Francesco
Witstok, Joris
Curti, Mirko
Arribas, Santiago
Bunker, Andrew J.
Charlot, Stéphane
Chevallard, Jacopo
Eisenstein, Daniel J.
Egami, Eiichi
Ji, Zhiyuan
Jones, Gareth C.
Lyu, Jianwei
Rawle, Tim
Robertson, Brant
Rujopakarn, Wiphu
Perna, Michele
Sun, Fengwu
Venturi, Giacomo
Williams, Christina C.
Willott, Chris
author_facet Maiolino, Roberto
Scholtz, Jan
Curtis-Lake, Emma
Carniani, Stefano
Baker, William
de Graaff, Anna
Tacchella, Sandro
Übler, Hannah
D'Eugenio, Francesco
Witstok, Joris
Curti, Mirko
Arribas, Santiago
Bunker, Andrew J.
Charlot, Stéphane
Chevallard, Jacopo
Eisenstein, Daniel J.
Egami, Eiichi
Ji, Zhiyuan
Jones, Gareth C.
Lyu, Jianwei
Rawle, Tim
Robertson, Brant
Rujopakarn, Wiphu
Perna, Michele
Sun, Fengwu
Venturi, Giacomo
Williams, Christina C.
Willott, Chris
contents We present 12 new AGN at 4<z<7 in the JADES survey (in addition to the previously identified AGN in GN-z11 at z=10.6) revealed through the detection of a Broad Line Region as seen in Halpha. The depth of JADES, together with the use of three different spectral resolutions, enables us to probe a lower mass regime relative to previous studies. In a few cases we find evidence for two broad components of Halpha which suggests that these could be candidate merging black holes (BHs). The inferred BH masses range between 8 x 10^7 Msun down to 4 x 10^5 Msun, interestingly probing the regime expected for Direct Collapse Black Holes (DCBHs). The inferred AGN bolometric luminosities (~10^44-10^45 erg/s) imply accretion rates that are < 0.5 times the Eddington rate in most cases. However, small BHs, with M_BH ~ 10^6 Msun, tend to accrete at Eddington or super-Eddington rates. These BH at z~4-11 are over-massive relative to their host galaxies stellar masses when compared to the local M_BH-Mstar relation, and even approaching M_BH~Mstar, as expected for DCBHs and super-Eddington scenarios. However, we find that these early BHs tend to be more consistent with the local relation between M_BH and velocity dispersion, as well as between M_BH and dynamical mass, suggesting that these are more fundamental and universal relations. On the BPT excitation-diagnostic diagram these AGN are located in the region that is that is locally occupied by star-forming galaxies, implying that they would be missed by the standard classification techniques if they did not display broad lines. Their location on the diagram is consistent with what expected for AGN hosted in metal poor galaxies (Z ~ 0.1-0.2 Zsun). The fraction of broad line AGN with L_AGN > 10^44 erg/s, among galaxies in the redshift range 4<z<6, is about 10%, suggesting that the contribution of AGN and their hosts to the reionization of the Universe is > 10%.
format Preprint
id arxiv_https___arxiv_org_abs_2308_01230
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle JADES. The diverse population of infant Black Holes at 4<z<11: merging, tiny, poor, but mighty
Maiolino, Roberto
Scholtz, Jan
Curtis-Lake, Emma
Carniani, Stefano
Baker, William
de Graaff, Anna
Tacchella, Sandro
Übler, Hannah
D'Eugenio, Francesco
Witstok, Joris
Curti, Mirko
Arribas, Santiago
Bunker, Andrew J.
Charlot, Stéphane
Chevallard, Jacopo
Eisenstein, Daniel J.
Egami, Eiichi
Ji, Zhiyuan
Jones, Gareth C.
Lyu, Jianwei
Rawle, Tim
Robertson, Brant
Rujopakarn, Wiphu
Perna, Michele
Sun, Fengwu
Venturi, Giacomo
Williams, Christina C.
Willott, Chris
Astrophysics of Galaxies
Cosmology and Nongalactic Astrophysics
High Energy Astrophysical Phenomena
We present 12 new AGN at 4<z<7 in the JADES survey (in addition to the previously identified AGN in GN-z11 at z=10.6) revealed through the detection of a Broad Line Region as seen in Halpha. The depth of JADES, together with the use of three different spectral resolutions, enables us to probe a lower mass regime relative to previous studies. In a few cases we find evidence for two broad components of Halpha which suggests that these could be candidate merging black holes (BHs). The inferred BH masses range between 8 x 10^7 Msun down to 4 x 10^5 Msun, interestingly probing the regime expected for Direct Collapse Black Holes (DCBHs). The inferred AGN bolometric luminosities (~10^44-10^45 erg/s) imply accretion rates that are < 0.5 times the Eddington rate in most cases. However, small BHs, with M_BH ~ 10^6 Msun, tend to accrete at Eddington or super-Eddington rates. These BH at z~4-11 are over-massive relative to their host galaxies stellar masses when compared to the local M_BH-Mstar relation, and even approaching M_BH~Mstar, as expected for DCBHs and super-Eddington scenarios. However, we find that these early BHs tend to be more consistent with the local relation between M_BH and velocity dispersion, as well as between M_BH and dynamical mass, suggesting that these are more fundamental and universal relations. On the BPT excitation-diagnostic diagram these AGN are located in the region that is that is locally occupied by star-forming galaxies, implying that they would be missed by the standard classification techniques if they did not display broad lines. Their location on the diagram is consistent with what expected for AGN hosted in metal poor galaxies (Z ~ 0.1-0.2 Zsun). The fraction of broad line AGN with L_AGN > 10^44 erg/s, among galaxies in the redshift range 4<z<6, is about 10%, suggesting that the contribution of AGN and their hosts to the reionization of the Universe is > 10%.
title JADES. The diverse population of infant Black Holes at 4<z<11: merging, tiny, poor, but mighty
topic Astrophysics of Galaxies
Cosmology and Nongalactic Astrophysics
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2308.01230