Glimmers in the Cosmic Dawn. III. On the Photometrically Determined Black Hole Mass to Stellar Mass Relation Across Cosmic Time

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Main Authors: Young, Alice R., Hayes, Matthew J., Saldana-Lopez, Alberto, Runnholm, Axel, Cammelli, Vieri, Tan, Jonathan C., Ellis, Richard S., Keller, Benjamin W., Melinder, Jens, Singh, Jasbir
Format: Preprint
Published: 2025
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author Young, Alice R.
Hayes, Matthew J.
Saldana-Lopez, Alberto
Runnholm, Axel
Cammelli, Vieri
Tan, Jonathan C.
Ellis, Richard S.
Keller, Benjamin W.
Melinder, Jens
Singh, Jasbir
author_facet Young, Alice R.
Hayes, Matthew J.
Saldana-Lopez, Alberto
Runnholm, Axel
Cammelli, Vieri
Tan, Jonathan C.
Ellis, Richard S.
Keller, Benjamin W.
Melinder, Jens
Singh, Jasbir
contents We present the results from performing spectral energy distribution (SED) fitting on 121 variable active galactic nuclei (AGN) candidates in the Hubble Ultra Deep Field (HUDF) using photometry from both the Hubble Space Telescope (HST) and the James Webb Space Telescope (JWST) covering $0.2 - 4.8$ microns. We designed a bespoke SED fitting code which decomposes the total SED into its stellar and AGN contributions. Our SED fitting retrieves a significant contribution to the total SED from an AGN template for 26 of our variable sources with $0 < z < 7$. We leverage the model AGN spectrum to estimate black hole masses ($M_{BH}$) using the measured luminosity at 5100 Å and local empirical calibrations. Common with recently discovered JWST broad line AGN (BL-AGN), we observe a trend in the $M_{BH} - M_{\ast}$ plane where low redshift sources have $M_{BH}$ which agree with local relations while high redshift sources have increasingly overmassive black holes with respect to the stellar mass ($M_{\ast}$) of their host galaxies. Within our sample, we identify two IMBH candidates hosted by dwarf galaxies at $z<1$ featuring overmassive BHs in the $M_{BH}-M_{\ast}$ plane, similarly to our high redshift sources. Finally, our SED fitter successfully retrieves the AGN nature of one source at $z >6$. This object has $z_{phot} = 6.74$ and we estimate a lower limit on its black hole mass of $\log_{10}(M_{BH}/M_{\odot}) > 7.36$.
format Preprint
id arxiv_https___arxiv_org_abs_2508_15905
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Glimmers in the Cosmic Dawn. III. On the Photometrically Determined Black Hole Mass to Stellar Mass Relation Across Cosmic Time
Young, Alice R.
Hayes, Matthew J.
Saldana-Lopez, Alberto
Runnholm, Axel
Cammelli, Vieri
Tan, Jonathan C.
Ellis, Richard S.
Keller, Benjamin W.
Melinder, Jens
Singh, Jasbir
Astrophysics of Galaxies
We present the results from performing spectral energy distribution (SED) fitting on 121 variable active galactic nuclei (AGN) candidates in the Hubble Ultra Deep Field (HUDF) using photometry from both the Hubble Space Telescope (HST) and the James Webb Space Telescope (JWST) covering $0.2 - 4.8$ microns. We designed a bespoke SED fitting code which decomposes the total SED into its stellar and AGN contributions. Our SED fitting retrieves a significant contribution to the total SED from an AGN template for 26 of our variable sources with $0 < z < 7$. We leverage the model AGN spectrum to estimate black hole masses ($M_{BH}$) using the measured luminosity at 5100 Å and local empirical calibrations. Common with recently discovered JWST broad line AGN (BL-AGN), we observe a trend in the $M_{BH} - M_{\ast}$ plane where low redshift sources have $M_{BH}$ which agree with local relations while high redshift sources have increasingly overmassive black holes with respect to the stellar mass ($M_{\ast}$) of their host galaxies. Within our sample, we identify two IMBH candidates hosted by dwarf galaxies at $z<1$ featuring overmassive BHs in the $M_{BH}-M_{\ast}$ plane, similarly to our high redshift sources. Finally, our SED fitter successfully retrieves the AGN nature of one source at $z >6$. This object has $z_{phot} = 6.74$ and we estimate a lower limit on its black hole mass of $\log_{10}(M_{BH}/M_{\odot}) > 7.36$.
title Glimmers in the Cosmic Dawn. III. On the Photometrically Determined Black Hole Mass to Stellar Mass Relation Across Cosmic Time
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2508.15905