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Glimmers in the Cosmic Dawn. II. A variability census of supermassive black holes across the Universe

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arxiv 2501.17675 v2 pith:55GIXGQ2 submitted 2025-01-29 astro-ph.GA

classification astro-ph.GA
keywords smbhvariabilitygtrsimwfc3blackcandidatescmpcconstraints
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abstract

Understanding the origin and evolution of supermassive black holes (SMBH) stands as one of the most important challenges in astrophysics and cosmology, with little current theoretical consensus. Improved observational constraints on the cosmological evolution of SMBH demographics are needed. Here we report results of a search via photometric variability for SMBHs appearing as active galactic nuclei (AGN) in the cosmological volume defined by the Hubble Ultra Deep Field (HUDF). This work includes particular focus on a new observation carried out in 2023 with the \textit{Hubble Space Telescope (HST)} using the WFC3/IR/F140W, which is compared directly to equivalent data taken 11 years earlier in 2012. Two earlier pairs of observations from 2009 to 2012 with WFC3/IR/F105W and WFC3/IR/F160W are also analysed. We identify 521, 188, and 109 AGN candidates as nuclear sources that exhibit photometric variability at a level of 2, 2.5 and 3~$\sigma$ in at least one filter. This sample includes 13, 3, and 2 AGN candidates at redshifts $z>6$, when the Universe was $\lesssim900$~Myr old. After variability and luminosity function (down to $M_{\rm UV}=-17\:$mag) completeness corrections, we estimate the co-moving number density of SMBHs, $n_{\rm SMBH}(z)$. At $z \gtrsim 6$, $n_{\rm SMBH}\gtrsim 6\times10^{-3}\:{\rm cMpc^{-3}}$. At low-$z$ our observations are sensitive to AGN fainter than $M_{\rm UV}=-17 \:$mag, and we estimate $n_{\rm SMBH}\gtrsim 10^{-2}\:{\rm cMpc^{-3}}$. We discuss how these results place strong constraints on a variety of SMBH seeding theories.

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Cited by 5 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. The Emergence and Ionizing Feedback of Pop III.1 Stars as Progenitors for Supermassive Black Holes

    astro-ph.GA 2025-07 conditional novelty 6.0 of 10

    Radiation-hydro simulations show Pop III.1 stars ionize bubbles of about 1 cMpc, which sets an isolation distance that yields n_SMBH ~ 10^-1 cMpc^-3 by z=14.

  2. On the rapid growth of SMBHs in high-z galaxies: the aftermath of Population III.1 stars

    astro-ph.GA 2025-07 conditional novelty 6.0 of 10

    Cosmological zoom-in simulations find that 10^5 solar mass Pop III.1 black hole seeds reach ~10^7 solar masses by z=8, with AGN feedback, especially radiation, regulating growth and launching fast outflows.

  3. The Evolution of Pop III.1 Protostars Powered by Dark Matter Annihilation. I. Fiducial model and first results

    astro-ph.SR 2025-07 conditional novelty 6.0 of 10

    WIMP annihilation heating above roughly 5e14 GeV/cm3 can keep primordial protostars cool and inflated, letting them grow past 1e5 solar masses and form heavy black hole seeds.

  4. Flash Ionization of the Early Universe by Pop III.1 Supermassive Stars

    astro-ph.CO 2025-06 conditional novelty 6.0 of 10

    Pop III.1 supermassive stars flash-ionize much of the early universe at z~20-30, adding tau~0.04 to the CMB optical depth and potentially easing Hubble tension and DESI anomalies.

  5. The Impact of Population III.1 Flash Reionization for CMB Polarization and Thomson Scattering Optical Depth

    astro-ph.CO 2025-10 conditional novelty 5.0 of 10

    An early 'Pop III.1 Flash' reionization phase shifts CMB polarization power from l<8 to l>8, allowing a higher optical depth τ≈0.08–0.09 while staying closer to Planck's low-l EE data than a standard tanh reionization model.

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