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Black Hole

Lensing of space time around a black hole. At Oxford we study black holes observationally and theoretically on all size and time scales - it is some of our core work.

Credit: ALAIN RIAZUELO, IAP/UPMC/CNRS. CLICK HERE TO VIEW MORE IMAGES.

Professor Andrew Bunker

Professor of Astrophysics

Research theme

  • Astronomy and astrophysics

Sub department

  • Astrophysics

Research groups

  • Galaxy formation and evolution
Andy.Bunker@physics.ox.ac.uk
Telephone: 01865 (2)83126
Denys Wilkinson Building, room 702
  • About
  • Publications

WFC3 Infrared Spectroscopic Parallel (WISP) survey: photometric and emission-line data release

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 530:1 (2024) 894-928

Authors:

AJ Battisti, MB Bagley, M Rafelski, I Baronchelli, YS Dai, AL Henry, H Atek, J Colbert, MA Malkan, PJ McCarthy, C Scarlata, B Siana, HI Teplitz, A Alavi, K Boyett, AJ Bunker, JP Gardner, NP Hathi, D Masters, V Mehta, M Rutkowski, K Shahinyan, B Sunnquist, X Wang

GA-NIFS: Early-stage feedback in a heavily obscured active galactic nucleus at z â¶Ä„= â¶Ä†4.76

Astronomy & Astrophysics EDP Sciences 684 (2024) A24-A24

Authors:

Eleonora Parlanti, Stefano Carniani, Hannah Übler, Giacomo Venturi, Chiara Circosta, Francesco D’Eugenio, Santiago Arribas, Andrew J Bunker, StĂ©phane Charlot, Nora LĂŒtzgendorf, Roberto Maiolino, Michele Perna, Bruno RodrĂ­guez Del Pino, Chris J Willott, Torsten Böker, Alex J Cameron, Jacopo Chevallard, Giovanni Cresci, Gareth C Jones, Nimisha Kumari, Isabella Lamperti, Jan Scholtz

Abstract:

Dust-obscured galaxies are thought to represent an early evolutionary phase of massive galaxies in which the active galactic nucleus (AGN) is still deeply buried in significant amounts of dusty material and its emission is strongly suppressed. The unprecedented sensitivity of the James Webb Space Telescope (JWST) enabled us for the first time to detect the rest-frame optical emission of heavily obscured AGNs and unveil the properties of the hidden accreting super-massive black holes (BHs). In this work, we present the JWST/NIRSpec integral field spectroscopy (IFS) data of ALESS073.1, a massive (log( M ⋆ / M ⊙ ) = 10.98) dusty, star-forming galaxy at z = 4.755 hosting an AGN at its center. The detection of a very broad (> 9000 km s −1 ) H α emission associated with the broad line region (BLR) confirms the presence of a BH (log( M BH / M ⊙ ) > 8.7) accreting at less than 18% of its Eddington limit. The identification of the BLR classifies the target as a type 1 AGN despite the observed high column density of N H ∌ 10 24 cm −2 . The rest-frame optical emission lines also reveal a fast (∌1700 km s −1 ) ionized gas outflow marginally resolved in the galaxy center. The high sensitivity of NIRSpec allowed us to perform the kinematic analysis of the narrow H α component, which indicates that the warm ionized gas velocity field is consistent with disk rotation. Interestingly, we find that in the innermost nuclear regions (< 1.5 kpc), the intrinsic velocity dispersion of the disk reaches ∌150 km s −1 , which is ∌2 − 3 times higher than the velocity dispersion inferred from the [C  II ] 158 ÎŒm line tracing mostly cold gas. Since at large radii the velocity dispersion of the warm and cold gas are comparable, we conclude that the outflows are injecting turbulence in the warm ionized gas in the central region, but they are not sufficiently powerful to disrupt the dense gas and quench star formation. These findings support the scenario that dust-obscured galaxies represent the evolutionary stage preceding the unobscured quasar when all gas and dust are removed from the host

Building the First Galaxies—Chapter 2. Starbursts Dominate the Star Formation Histories of 6 < z < 12 Galaxies

The Astrophysical Journal American Astronomical Society 964:2 (2024) 150-150

Authors:

Alan Dressler, Marcia Rieke, Daniel Eisenstein, Daniel P Stark, Chris Burns, Rachana Bhatawdekar, Nina Bonaventura, Kristan Boyett, Andrew J Bunker, Stefano Carniani, Stephane Charlot, Ryan Hausen, Karl Misselt, Sandro Tacchella, Christopher Willmer

Abstract:

We use SEDz*—a code designed to chart the star formation histories (SFHs) of 6 < z < 12 galaxies—to analyze the spectral energy distributions (SEDs) of 894 galaxies with deep JWST/NIRCam imaging by JADES in the GOODS-S field. We show how SEDz* matches observed SEDs using stellar-population templates, graphing the contribution of each epoch by epoch to confirm the robustness of the technique. Very good SED fits for most SFHs demonstrate the compatibility of the templates with stars in the first galaxies—as expected, because their light is primarily from main-sequence A stars, free of post-main-sequence complexity, and insensitive to heavy-element compositions. We confirm earlier results from Dressler et al. (1) There are four types of SFHs: SFH1, burst; SFH2, stochastic; SFH3, “contiguous” (three epochs), and SFH4, “continuous” (four to six epochs). (2) Starbursts—both single and multiple—are predominant (∌70%) in this critical period of cosmic history, although longer SFHs (0.5-1.0 Gyr) contribute one-third of the accumulated stellar mass. These 894 SFHs contribute 1011.14, 1011.09, 1011.00, and 1010.60 M ⊙ for SFH1-4, respectively, adding up to ∌4 × 1011 M ⊙ by z = 6 for this field. We suggest that the absence of rising SFHs could be explained as an intense dust-enshrouded phase of star formation lasting tens of Myr that preceded each of the SFHs we measure. We find no strong dependencies of SFH type with the large-scale environment; however, the discovery of a compact group of 30 galaxies, 11 of which had first star formation at z = 11-12, suggests that long SFHs could dominate in rare, dense environments

JADES: the emergence and evolution of Lyα emission and constraints on the intergalactic medium neutral fraction

Astronomy & Astrophysics EDP Sciences 683 (2024) A238

Authors:

Gareth C Jones, Andrew J Bunker, Aayush Saxena, Joris Witstok, Daniel P Stark, Santiago Arribas, William M Baker, Rachana Bhatawdekar, Rebecca Bowler, Kristan Boyett, Alex J Cameron, Stefano Carniani, Stephane Charlot, Jacopo Chevallard, Mirko Curti, Emma Curtis-Lake, Daniel J Eisenstein, Kevin Hainline, Ryan Hausen, Zhiyuan Ji, Benjamin D Johnson, Nimisha Kumari, Tobias J Looser, Roberto Maiolino, Michael V Maseda, Eleonora Parlanti, Hans-Walter Rix, Brant E Robertson, Lester Sandles, Jan Scholtz, Renske Smit, Sandro Tacchella, Hannah Übler, Christina C Williams, Chris Willott

Abstract:

The rest-frame UV recombination emission line Lyα can be powered by ionising photons from young massive stars in star-forming galaxies, but the fact that it can be resonantly scattered by neutral gas complicates its interpretation. For reionisation-era galaxies, a neutral intergalactic medium will scatter Lyα from the line of sight, making Lyα a useful probe of the neutral fraction evolution. Here, we explore Lyα in JWST/NIRSpec spectra from the ongoing JADES programme, which targets hundreds of galaxies in the well-studied GOODS-S and GOODS-N fields. These sources are UV-faint (−20.4 < MUV < −16.4) and thus represent a poorly explored class of galaxy. We fitted the low spectral resolution spectra (R ∌ 100) of a subset of 84 galaxies in GOODS-S with zspec > 5.6 (as derived with optical lines) with line and continuum models to search for significant line emission. Through exploration of the R100 data, we find evidence for Lyα in 17 sources. This sample allowed us to place observational constraints on the fraction of galaxies with Lyα emission in the redshift range 5.6 < z < 7.5, with a decrease from z = 6 to z = 7. We also find a positive correlation between the Lyα equivalent width and MUV, as seen in other samples. We used these results to estimate the neutral gas fraction at z ∌ 7, and our estimates are in agreement with previous results (XHI ∌ 0.5 − 0.9).

The UV continuum slopes of early star-forming galaxies in JADES

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 529:4 (2024) 4087-4103

Authors:

Michael W Topping, Daniel P Stark, Ryan Endsley, Lily Whitler, Kevin Hainline, Benjamin D Johnson, Brant Robertson, Sandro Tacchella, Zuyi Chen, Stacey Alberts, William M Baker, Andrew J Bunker, Stefano Carniani, Stephane Charlot, Jacopo Chevallard, Emma Curtis-Lake, Christa DeCoursey, Eiichi Egami, Daniel J Eisenstein, Zhiyuan Ji, Roberto Maiolino, Christina C Williams, Christopher NA Willmer, Chris Willott, Joris Witstok

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